qBitTensorLabs's profile picture. | Quantum computing on Bittensor ||| Subnet 48 | Subnet 63 | @OpenQuantum_ |

qBitTensor Labs

@qBitTensorLabs

| Quantum computing on Bittensor ||| Subnet 48 | Subnet 63 | @OpenQuantum_ |

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Welcome to our live show! x.com/i/broadcasts/1…


We’ve increased the incentive pool by 5% as we prepare to introduce new public-facing challenges beyond the Bittensor ecosystem! Shoutout to @ridges_ai for showing us the way.

Subnet 63: Quantum Innovate Update > Tracks registration time – normalizes scoring over time, enabling new Miners to reach their expected score more quickly. > Increased hardcoded incentive key-- inspiration credit: @ridges_ai 👑 > Decreased immunity period.…

qBitTensorLabs's tweet image. Subnet 63: Quantum Innovate Update

> Tracks registration time – normalizes scoring over time, enabling new Miners to reach their expected score more quickly.
> Increased hardcoded incentive key-- inspiration credit: @ridges_ai 👑
> Decreased immunity period.…


Subnet 63: Quantum Innovate Update > Tracks registration time – normalizes scoring over time, enabling new Miners to reach their expected score more quickly. > Increased hardcoded incentive key-- inspiration credit: @ridges_ai 👑 > Decreased immunity period.…

qBitTensorLabs's tweet image. Subnet 63: Quantum Innovate Update

> Tracks registration time – normalizes scoring over time, enabling new Miners to reach their expected score more quickly.
> Increased hardcoded incentive key-- inspiration credit: @ridges_ai 👑
> Decreased immunity period.…

qBitTensor Labs 已轉發

Shout out to a friend and colleague, Dr. John Martinis and his brilliant colleagues John Clarke and Michel Devoret awarded the 2025 Nobel Prize in Physics for their contributions to quantum! Currently CTO of his Quantum Computer startup, Qolab, John lead a professional and…

BREAKING NEWS The Royal Swedish Academy of Sciences has decided to award the 2025 #NobelPrize in Physics to John Clarke, Michel H. Devoret and John M. Martinis “for the discovery of macroscopic quantum mechanical tunnelling and energy quantisation in an electric circuit.”

NobelPrize's tweet image. BREAKING NEWS
The Royal Swedish Academy of Sciences has decided to award the 2025 #NobelPrize in Physics to John Clarke, Michel H. Devoret and John M. Martinis “for the discovery of macroscopic quantum mechanical tunnelling and energy quantisation in an electric circuit.”


Subnet 63: Quantum Innovate Challenge III (Coming soon) Shor’s algorithm is one of the most important breakthroughs in quantum computing. It demonstrated, for the first time, that a quantum computer can solve a problem exponentially faster than any known classical algorithm;…

qBitTensorLabs's tweet image. Subnet 63: Quantum Innovate

Challenge III (Coming soon)
Shor’s algorithm is one of the most important breakthroughs in quantum computing. It demonstrated, for the first time, that a quantum computer can solve a problem exponentially faster than any known classical algorithm;…
qBitTensorLabs's tweet image. Subnet 63: Quantum Innovate

Challenge III (Coming soon)
Shor’s algorithm is one of the most important breakthroughs in quantum computing. It demonstrated, for the first time, that a quantum computer can solve a problem exponentially faster than any known classical algorithm;…
qBitTensorLabs's tweet image. Subnet 63: Quantum Innovate

Challenge III (Coming soon)
Shor’s algorithm is one of the most important breakthroughs in quantum computing. It demonstrated, for the first time, that a quantum computer can solve a problem exponentially faster than any known classical algorithm;…

Thank you to everyone who listened to QBTLL #3 yesterday and shared your excitement. The community has made it clear, there’s strong anticipation for Shor’s release, and for what’s ahead with Subnet 48 (Quantum Compute) and @OpenQuantum_. We can’t wait to deliver 🩵


qBitTensor Labs 已轉發

Welcome to our live show! x.com/i/broadcasts/1…


QBTLL #3 today at 16:00 UTC. Join us on @X and @RiversidedotFM for the latest updates, discussion, and previews. We’ll drop the links when we go live.

qBitTensorLabs's tweet image. QBTLL #3 today at 16:00 UTC.

Join us on @X and @RiversidedotFM for the latest updates, discussion, and previews.

We’ll drop the links when we go live.

Subnet 63: Technical Update + Validator Expansion We’ve just shipped an important update that significantly improves generation stability and throughput across Quantum Innovate. Roughly 4x faster speeds means more Peaked Circuits for our Miners! Here’s what’s new: > Fixed seed…


qBitTensor Labs Live #3 16:00 UTC, Thursday. We’re opening the floor to community questions. What should we discuss? To catch up on what we’ve covered recently, watch qBTLL #1 + #2 and our Hash Rate with @markjeffrey.

qBitTensorLabs's tweet image. qBitTensor Labs Live #3
16:00 UTC, Thursday.

We’re opening the floor to community questions. What should we discuss?

To catch up on what we’ve covered recently, watch qBTLL #1 + #2 and our Hash Rate with @markjeffrey.

Last week we released 'Technical Description of Shor’s Order-Finding Circuits', our paper on Subnet 63's next challenge. Shor’s algorithm is the breakthrough quantum method for factoring large numbers, threatening classical cryptography. This paper details the circuits behind…

qBitTensorLabs's tweet image. Last week we released 'Technical Description of Shor’s Order-Finding Circuits', our paper on Subnet 63's next challenge.

Shor’s algorithm is the breakthrough quantum method for factoring large numbers, threatening classical cryptography. This paper details the circuits behind…

qBitTensor Labs 已轉發

Quantum algorithms are the key to unlocking the full potential of quantum computing. While advances in hardware (such as improving qubit quality) are critical, it’s the algorithms that determine whether quantum systems can actually solve real-world problems. Without robust…

qBitTensorLabs's tweet image. Quantum algorithms are the key to unlocking the full potential of quantum computing. While advances in hardware (such as improving qubit quality) are critical, it’s the algorithms that determine whether quantum systems can actually solve real-world problems. Without robust…

During last week’s QBTLL, we floated the idea: want early access to the Shor’s paper, even if the challenge is still a few weeks away? You gave us a clear answer. It’s live! Head to qBitTensorLabs.com to check it out.


qBitTensor Labs 已轉發

Update: Subnet 63 Boosts circuit generation efficiency by more than 2x. > Peaked Circuit Recycling V1 >> Reuses existing circuits to generate obfuscated variants >> Faster generation time means more Miners served >> Base su4 series can be reused, thus cutting compute time in…


qBitTensor Labs 已轉發

Respectfully, this post misrepresents quantum computing’s potential. Quantum computers were never meant to replace classical computers-- expecting them to is like saying 1950s digital computers should’ve replaced vacuum cleaners. They’re specialized tools for problems where they…


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