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Brookhaven Lab Shuts Down Relativistic Heavy Ion Collider (RHIC)

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2001: “Brookhaven Labs has produced for the first time collisions of gold nuclei at a center of mass energy of 200GeV/nucleon.”

2002: “There may be a new type of matter according to researchers at Brookhaven National Laboratory.”

2010: The hottest man-made temperatures ever achived were a record 4 trillion degree plasma experiment at Brookhaven National Laboratory in New York… anointed the Guinness record holder.”

2023: “Scientists at Brookhaven National Laboratory have uncovered an entirely new kind of quantum entanglement.”

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2026: On Friday, February 6, “a control room full of scientists, administrators and members of the press gathered” at the Relativistic Heavy Ion Collider (RHIC) at Brookhaven National Lab in Upton, New York to witness its final collisions, reports Scientific American:


The vibe had been wistful, but the crowd broke into applause as Darío Gil, the Under Secretary for Science at the U.S. Department of Energy, pressed a red button to end the collider’s quarter-century saga… “I’m really sad” [said Angelika Drees, a BNL accelerator physicist]. “It was such a beautiful experiment and my research home for 27 years. But we’re going to put something even better there.”

That “something” will be a far more powerful electron-ion collider to further push the frontiers of physics, extend RHIC’s legacy and maintain the lab’s position as a center of discovery. This successor will be built in part from RHIC’s bones, especially from one of its two giant, subterranean storage rings that once held the retiring collider’s supply of circulating, near-light speed nuclei…slated for construction over the next decade. [That Electron-Ion Collider, or EIC] will utilize much of RHIC’s infrastructure, replacing one of its ion rings with a new ring for cycling electrons. The EIC will use those tiny, fast-flying electrons as tiny knives for slicing open the much larger gold ions. Physicists will get an unrivaled look into the workings of quarks and gluons and yet another chance to grapple with nature’s strongest force. “We knew for the EIC to happen, RHIC needed to end,” says Wolfram Fischer, who chairs BNL’s collider-accelerator department. “It’s bittersweet.”

EIC will be the first new collider built in the US since RHIC. To some, it signifies the country’s reentry into a particle physics landscape it has largely ceded to Europe and Asia over the past two decades. “For at least 10 or 15 years,” says Abhay Deshpande, BNL’s associate laboratory director for nuclear and particle physics, “this will be the number one place in the world for [young physicists] to come.”

The RHIC was able “to separately send two protons colliding with precisely aligned spins — something that, even today, no other experiment has yet matched,” the article points out:

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During its record-breaking 25-year run, RHIC illuminated nature’s thorniest force and its most fundamental constituents. It created the heaviest, most elaborate assemblages of antimatter ever seen. It nearly put to rest a decades-long crisis over the proton’s spin. And, of course, it brought physicists closer to the big bang than ever before…

When RHIC at last began full operations in 2000, its initial heavy-ion collisions almost immediately pumped out quark-gluon plasma. But demonstrating this beyond a shadow of a doubt proved in some respects more challenging than actually creating the elusive plasma itself, with the case for success strengthening as RHIC’s numbers of collisions soared. By 2010 RHIC’s scientists were confident enough to declare that the hot soup they’d been studying for a decade was hot and soupy enough to convincingly constitute a quark-gluon plasma. And it was even weirder than they thought. Instead of the gas of quarks and gluons theorists expected, the plasma acted like a swirling liquid unprecedented in nature. It was nearly “perfect,” with zero friction, and set a new record for twistiness, or “vorticity.” For Paul Mantica, a division director for the Facilities and Project Management Division in the DOE’s Office of Nuclear Physics, this was the highlight of RHIC’s storied existence. “It was paradigm-changing,” he says…

Data from the final run (which began nearly a year ago) has already produced yet another discovery: the first-ever direct evidence of “virtual particles” in RHIC’s subatomic puffs of quark-gluon plasma, constituting an unprecedented probe of the quantum vacuum.

RHIC’s last run generated hundreds of petabytes of data, the article points out, meaning its final smash “isn’t really the end; even when its collisions stop, its science will live on.”

But Science News notes RHIC’s closure “marks the end for the only particle collider operating in the United States, and the only collider of its kind in the world. Most particle accelerators are unable to steer two particle beams to crash head-on into one another.”

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NASA lets astronauts fly with smartphones, fast-tracks consumer tech, and quietly rewrites long-standing rules for documenting space missions

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  • NASA formally approves personal smartphones for government missions beginning with Crew-12
  • Artemis II will carry consumer phones alongside traditional spaceflight imaging equipment
  • Fast-tracked hardware approval marks a procedural shift inside NASA operations

NASA has confirmed its astronauts will now be allowed to carry personal smartphones on crewed missions, starting with Crew-12 and the delayed Artemis II flight.

Crew-12 is scheduled to travel to the International Space Station in mid-February 2026, while Artemis II is now expected to launch in March.

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Upgrading An Old Macbook With An Old Processor

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The Core Duo processor from Intel may not have been the first multi-core processor available to consumers, but it was arguably the one that brought it to the masses. Unfortunately, the first Core Duo chips were limited to 32-bit at a time when the industry was shifting toward 64-bit. The Core 2 Duo eventually filled this gap, and [dosdude1] recently completed an upgrade to a Macbook Pro that he had always wanted to do by replacing the Core Duo processor it had originally with a Core 2 Duo from a dead motherboard.

The upgrade does require a bit more tooling than many of us may have access too, but the process isn’t completely out of reach, and centers around desoldering the donor processor and making sure the new motherboard gets heated appropriately when removing the old chip and installing the new one. These motherboards had an issue of moisture ingress which adds a pre-heating step that had been the cause of [dosdude1]’s failures in previous attempts. But with the new chip cleaned up, prepared with solder balls, and placed on the new motherboard it was ready to solder into its new home.

Upon booting the upgraded machine, the only hiccup seemed to be that the system isn’t correctly identifying the clock speed. A firmware update solved this problem, though, and the machine is ready for use. For those who may be wondering why one would do something like this given the obsolete hardware, we’d note that beyond the satisfaction of doing it for its own sake these older Macbooks are among the few machines that can run free and open firmware, and also that Macbooks that are a decade or older can easily make excellent Linux machines even given their hardware limitations.

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Investigating The Science Claims Behind The Donut Solid State Battery

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Earlier this year Donut Lab caused quite the furore when they unveiled what they claimed was the world’s first production-ready solid state battery, featuring some pretty stellar specifications. Since then many experts and enthusiasts in the battery space have raised concerns that this claimed battery may not be real, or even possible at all. After seeing the battery demonstrated at CES’26 and having his own concerns, [Ziroth] decided to do some investigating on what part of the stated claims actually hold up when subjected to known science.

On paper, the Donut Lab battery sounds amazing: full charge in less than 10 minutes, 400 Wh/kg energy density, 100,000 charge cycles, extremely safe and low cost. Basically it ticks every single box on a battery wish list, yet the problem is that this is all based on Donut’s own claims. Even aside from the concerns also raised in the video about the company itself, pinning down what internal chemistry and configuration would enable this feature set proves to be basically impossible.

In this summary of research done on Donut’s claimed battery as well as current battery research, a number of options were considered, including carbon nanotube-based super capacitors. Yet although this features 418 Wh/kg capacity, this pertains only to the basic material, not the entire battery which would hit something closer to 50 Wh/kg.

Other options include surface-redox sodium-ion chemistry with titanium oxide. This too would allow for fast charging and high endurance, but Donut has already come out to state that their battery is not capacitor-based and uses no lithium, so that gets shot down too.

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Combined with the ‘cheap’ and ‘scalable’ claims this effectively shoots down any potential battery chemistry and architecture. Barring some amazing breakthrough this thus raises many red flags, especially when you consider Donut Lab’s major promises for investors that should make any reasonable person feel skittish about pouring money into the venture.

Sadly, it seems that this one too will not be the battery breakthrough that we’re all waiting for. Even new chemistries like sodium-ion are struggling to make much of inroads, although lithium-titanate shows real promise. Albeit it not with amazing power density increases that would make it better than plain lithium-ion for portable applications.

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Qualcomm may borrow Samsung's cooling tech for its next Snapdragon flagship

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The Heat Pass Block first appeared in Samsung’s 2nm Exynos 2600, reportedly delivering a 16 percent improvement in thermal resistance. It’s a copper-based layer built directly onto the processor die, providing a direct pathway for heat to dissipate before it can radiate through surrounding components.
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Annual VC funding in Irish SMEs falls for first time since 2018

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‘It’s been a rollercoaster year for Irish SMEs looking to raise capital,’ said Caroline Gaynor, chair of the IVCA.

For the first time since 2018, annual venture capital (VC) funding into Irish technology small and medium enterprises (SMEs) has fallen, according to the Irish Venture Capital Association (IVCA) Venture Pulse report. 

The report, which was published today (8 February), in partnership with Irish law firm William Fry, indicated that funding in 2025 fell by 23pc to €1.1bn – a decline from 2024’s record €1.48bn. A total of 186 deals were completed in 2025, down from 217 in 2024 – representing a drop of 14pc.

Meanwhile, funding in the fourth quarter specifically fell by 46pc to €291.4m.

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For Sarah-Jane Larkin, the director general of IVCA, the fourth quarter and IVCA’s research highlighted the weakness of not being able to tap into local private capital. “A major reason for the 46pc decline in fourth quarter funding was the 71pc fall off in international investment,” she said.

“Another reason for the decrease in international funding may be that US investors may be overly focused on local AI opportunities and certainly the amount of money being invested there is sucking up a lot of venture capital. Unicorn status is being achieved by early stage start-ups in generative AI in the US much quicker than in the past.”

The lack of overseas investment, according to Larkin, is reflected in the significant drop in deals valued at more than €30m, which saw a drop of more than 33pc compared to 2024 at €540.8m. In the fourth quarter specifically, this category fell by 69pc to €111m.

Funding in the €10m-30m range for the year overall also fell, dropping 14pc to €269.4m, while deals under €1m dropped by 26pc to €21.3m.

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However, the IVCA indicated that transactions for other smaller rounds held up “reasonably well” in 2025, with funding in the €3m-5m category rising by 39pc to €113.8m. There was a small decline of 3pc in the €1-3m range to €102.2m, and seed funding dropped by 5pc to €141m.

The top five funding deals in quarter four were quantum computing company Equal 1 (€30m), Shorla Oncology (€25m), Aerska (€17m), Fresco (€15m) and Luminate Medical (€14m). 

Life science companies attracted the most funding in 2025 in Ireland, raising 40pc of the total at €461m. This was followed by software at €156m, cybersecurity with €136m, AI and machine learning with €104m, and fintech with €96m. 

Remaining positive

“It’s been a rollercoaster year for Irish SMEs looking to raise capital,” commented Caroline Gaynor, who is the chair of IVCA. She suggested that instability as a result of US president Donald Trump’s tariffs has, in part, led to the worst second quarter on record seen in the last 10 years. 

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“In addition, the fourth quarter saw a 71pc retreat from the Irish market by international investors from €470m to €132.4m. This may be due to hesitation and uncertainty by US VC firms due to a number of factors including an ‘America first’ focus, negativity from across the Atlantic about Europe and the impact of a weakening dollar.”

However, Gaynor said she remained positive about Irish entrepreneurs looking to raise capital in 2026. She explained that the Irish Government’s Seed and Venture Capital Scheme 2025 has a record allocation of €250m and the benefits of the scheme should be coming into effect shortly. 

“Progress is being made on the Government’s important Enterprise Scaling Fund 2, as well as other policy measures to mobilise capital to Irish SMEs. Current geopolitical events have highlighted the need for us to be more self-reliant, have more access to local capital and not be dependent on overseas investors to fund our indigenous tech sectors.”

With additional reporting by Colin Ryan

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New tool blocks imposter attacks disguised as safe commands

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New tool blocks imposter attacks disguised as safe commands

A new open-source and cross-platform tool called Tirith can detect homoglyph attacks over command-line environments by analyzing URLs in typed commands and stopping their execution. 

Available on GitHub and also as an npm package, the tool works by hooking into the user’s shell (zsh, bash, fish, PowerShell) and inspecting every command the user pastes for execution.

URLs in commands look identical but are different
URLs in commands look identical but are different
Source: GitHub

The idea is to block deceptive attacks that rely on URLs containing symbols from different alphabets that appear identical or nearly identical to the user but are treated as different characters by the computer (homoglyph attacks).

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This lets attackers create a domain names that looks the same as that of a legitimate brand but have one or more characters from a different alphabet. On the computer screen, the domain looks legitimate for the human eye, but machines interpret the anomalous character correctly and resolve the domain to the server controlled by the attacker.

While browsers have addressed the issue, terminals continue to be susceptible as they can still render Unicode, ANSI escapes, and invisible characters, says Tirith’s author, Sheeki, in the description of the tool.  

According to Sheeki, the Tirith can detect and block the following types of attack:

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  • Homograph attacks (Unicode lookalike characters in domains, punycode, and mixed scripts)
  • Terminal injection (ANSI escapes, bidi overrides, zero-width chars)
  • Pipe-to-shell patterns (curl | bash, wget | sh, eval $(…))
  • Dotfile hijacking (~/.bashrc, ~/.ssh/authorized_keys, etc.)
  • Insecure transport (HTTP to shell, TLS disabled)
  • Supply-chain risks (typosquatted git repos, untrusted Docker registries)
  • Credential exposure (userinfo URLs, shorteners hiding destinations)

Unicode homoglyph characters have been used in the past in URLs delivered over email that led to a malicious website. One example is a phishing campaign last year impersonating Booking.com.

 and hidden characters in commands are very common in ClickFix attacks used by a broad range of cybercriminals, so Tirith could provide some level of defense against them on supported PowerShell sessions.

It should be noted that Tirith does not hook onto Windows Command Prompt (cmd.exe), which is used in many ClickFix attacks that instruct users to execute malicious commands.

Sheeki says the overhead of using Tirith is sub-millisecond level, so the checks are performed instantaneously, and the tool terminates immediately when done.

The tool can also analyze commands without running them, break down a URL’s trust signals, perform byte-level Unicode inspection, and audit receipts with SHA-256 for executed scripts.

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The creator assures that Tirith performs all analysis actions locally, without making any network calls, does not modify the user’s pasted commands, and does not run in the background. Also, it does not require cloud access or network, accounts, or API keys, and does not send any telemetry data to the creator.

Tirith works on Windows, Linux, and macOS, and can be installed through Homebrew, apt/dnf, npm, Cargo, Nix, Scoop, Chocolatey, and Docker.

BleepingComputer has not tested Tirith against the listed attack scenarios, but the project has 46 forks and almost 1,600 stars on GitHub, less than a week from being published.

Modern IT infrastructure moves faster than manual workflows can handle.

In this new Tines guide, learn how your team can reduce hidden manual delays, improve reliability through automated response, and build and scale intelligent workflows on top of tools you already use.

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India has changed its startup rules for deep tech

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Deep tech startups in sectors such as space, semiconductors, and biotech take far longer to mature than conventional ventures. Because of that India is adjusting its startup rules, and mobilizing public capital, hoping to help more of them make it to commercial products.

This week, the Indian government updated its startup framework, doubling the period for which deep tech companies are treated as startups to 20 years and raising the revenue threshold for startup-specific tax, grant, and regulatory benefits to ₹3 billion (about $33.12 million), from ₹1 billion (around $11.04 million) previously. The change aims to align policy timelines with the long development cycles typical of science- and engineering-led businesses.

The change also forms part of New Delhi’s effort to build a long-horizon deep tech ecosystem by combining regulatory reform with public capital, including the ₹1 trillion (around $11 billion) Research, Development and Innovation Fund (RDI), announced last year. That fund is intended to expand patient financing for science-led and R&D-driven companies. Against that backdrop, U.S. and Indian venture firms later came together to launch the India Deep Tech Alliance, $1 billion-plus private investor coalition that includes Accel, Blume Ventures, Celesta Capital, Premji Invest, Ideaspring Capital, Qualcomm Ventures, and Kalaari Capital, with chipmaker Nvidia acting as an adviser.

For founders, these changes may fix what some see as an artificial pressure point. Under the previous framework, companies often risked losing startup status while still pre-commercial, creating a “false failure signal” that judged science-led ventures on policy timelines rather than technological progress, said Vishesh Rajaram, founding partner at Speciale Invest, an Indian deep tech venture capital firm.

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“By formally recognizing deep tech as different, the policy reduces friction in fundraising, follow-on capital, and engagement with the state, which absolutely shows up in a founder’s operating reality over time,” Rajaram told TechCrunch.

Still, investors say access to capital remains a more binding constraint, particularly beyond the early stages. “The biggest gap has historically been funding depth at Series A and beyond, especially for capital-intensive deep tech companies,” Rajaram said. That is where the government’s earlier RDI fund is meant to play a complementary role.

“The real benefit of the RDI framework is to increase the funding available to deep tech companies at early and growth stages,” said Arun Kumar, managing partner at Celesta Capital. By routing public capital through venture funds with tenors similar to private capital, he said, the fund is designed to address chronic gaps in follow-on funding without altering the commercial criteria that govern private investment decisions.

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Siddarth Pai, founding partner at 3one4 Capital and co-chair of regulatory affairs at the Indian Venture and Alternate Capital Association, said India’s deep tech framework avoids a “graduation cliff” that has historically cut companies off from support just as they scale.

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These policy changes come as the RDI fund is beginning to take shape operationally, Pai said, with the first batch of fund managers identified and the process of selecting venture and private equity managers under way.

While private capital for deep tech already exists in India — particularly in areas such as biotech — Pai told TechCrunch the RDI Fund is intended to act as a nucleus around which greater capital formation can occur. Unlike a traditional fund-of-funds, he noted, the vehicle is also designed to take direct positions and provide credit and grants to deep tech startups.

India’s deep tech funding grows

In terms of scale, India remains an emerging rather than dominant deep tech market. Indian deep tech startups have raised $8.54 billion in total to date, but recent data point to renewed momentum. Indian deep tech startups raised $1.65 billion in 2025, a sharp rebound from $1.1 billion in each of the previous two years after funding peaked at $2 billion in 2022, per Tracxn. The recovery suggests growing investor confidence, particularly in areas aligned with national priorities such as advanced manufacturing, defence, climate technologies, and semiconductors.

“Overall, the pickup in funding suggests a gradual move toward longer-horizon investing,” said Neha Singh, co-founder of Tracxn.

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In comparison, U.S. deep tech startups raised about $147 billion in 2025, more than 80 times the amount deployed in India that year, while China accounted for roughly $81 billion, data from Tracxn shows.

The disparity highlights the challenge India faces in building capital-intensive technologies, even with its wealth of engineering talent. So the hope is that these moves by the Indian government will lead to more investor participation over the medium term.

Image Credits:Jagmeet Singh / TechCrunch

A longer-term signal

For global investors, New Delhi’s framework change is being read as a signal of longer-term policy intent rather than a trigger for immediate shifts in allocation. “Deep tech companies operate on seven- to twelve-year horizons, so regulatory recognition that stretches the lifecycle gives investors greater confidence that the policy environment will not change mid-journey,” said Pratik Agarwal, a partner at Accel. While he said the change would not alter allocation models overnight or eliminate policy risk entirely, it increased investor comfort that India is thinking about deep tech on longer time horizons.

“The change shows that India is learning from the U.S. and Europe on how to create patient frameworks for frontier building,” Agarwal told TechCrunch.

Whether the move will reduce the tendency of Indian startups to shift their headquarters overseas as they scale remains an open question.

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The extended runway strengthens the case for building and staying in India, Agarwal said, though access to capital and customers still matters. Over the past five years, he added, India’s public markets have shown a growing appetite for venture-backed tech companies, making domestic listings a more credible option than in the past. That, in turn, could ease some of the pressure on deep tech founders to incorporate overseas, even if access to procurement and late-stage capital will continue to shape where companies ultimately scale.

For investors backing long-horizon technologies, the ultimate test will be whether India can deliver globally competitive outcomes. The real signal, Kumar of Celesta Capital said, would be the emergence of a critical mass of Indian deep tech companies succeeding on the world stage.

“It would be great to see ten globally competitive deep tech companies from India achieve sustained success over the next decade,” he said, describing that as the benchmark he would look for in assessing whether India’s deep tech ecosystem is maturing.

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NYT Connections hints and answers for Monday, February 9 (game #974)

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Looking for a different day?

A new NYT Connections puzzle appears at midnight each day for your time zone – which means that some people are always playing ‘today’s game’ while others are playing ‘yesterday’s’. If you’re looking for Sunday’s puzzle instead then click here: NYT Connections hints and answers for Sunday, February 8 (game #973).

Good morning! Let’s play Connections, the NYT’s clever word game that challenges you to group answers in various categories. It can be tough, so read on if you need Connections hints.

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NYT Strands hints and answers for Monday, February 9 (game #708)

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Looking for a different day?

A new NYT Strands puzzle appears at midnight each day for your time zone – which means that some people are always playing ‘today’s game’ while others are playing ‘yesterday’s’. If you’re looking for Sunday’s puzzle instead then click here: NYT Strands hints and answers for Sunday, February 8 (game #707).

Strands is the NYT’s latest word game after the likes of Wordle, Spelling Bee and Connections – and it’s great fun. It can be difficult, though, so read on for my Strands hints.

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Up-Close Look at the ‘Essential’ Torch Used at the Milano Cortina 2026 Winter Olympics

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Essential Torch 2026 Milano Cortina Olympics
The Milano Cortina 2026 Winter Olympics torch, dubbed “Essential,” is a quiet game changer in an object that has been passing the flame around the world for decades. Carlo Ratti, the architect, approached the project with a question in mind: how does an object transmit emotion? His instruction was to pare down to the bare essentials and let the flame do the talking.



So his team set out to reduce the size of the holder while keeping the fire as the main attraction. A little slot runs along the side of the object, allowing viewers to have a good look at the burner mechanism and see the fire burning away inside. As the torch moves from person to person, they get to experience the entire thing come to life.


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The materials Ratti picked felt quite restrained, since the body is comprised of recyclable aluminum with a bit of brass tossed in; it weighs just under 2.5 pounds, making it the lightest Olympic torch ever produced. That was no small effort given that all of the usual suspects were involved: engineers, Olympic committees, and sponsor Versalis all worked together over three years to perfect the design. They even included a fancy heat-resistant coating that makes the torch look like the Italian skies on a sunny day, as opposed to the Paralympic torch, which has a gold finish, but both of them have this lovely quality where the light bounces off and appears to change in the light, similar to how the mountains or city lights reflect back at you.


Sustainability is the name of the game here, as the torch is powered by a special, bio-friendly kind of gas manufactured from sustainable materials, courtesy of ENI. Instead of burning out after a single use, this torch can be recharged up to ten times, requiring fewer of them in the first place, which is better for the environment. The flame, however, remains as steady as a rock, even when the wind is howling, it is raining, or you are stuck up a mountain, and it all began in Olympia, Greece, then traveled to Italy, where it toured all 110 provinces before eventually arriving in Milan for the big ceremony on February 6th.

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Essential Torch 2026 Milano Cortina Olympics
The clean lines and exquisite shape reflect the Italian design history. Ratti describes it as sleek, extended, and appears to be constructed of almost nothing at all due to the body’s receding shape. The flame simply pokes out at you and pulls your attention straight to it, as it should, emphasizing its function as a symbol of all that is good in the world, including togetherness, friendship, and people working together.

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