How To Make Quantum Algorithms Cheaper | Craig Gidney on Magic-State Factories, Resource Estimates
632nm27 Maalis

How To Make Quantum Algorithms Cheaper | Craig Gidney on Magic-State Factories, Resource Estimates

How do you actually make quantum algorithms work on real hardware?

Build your own quantum circuits in Crumble: https://algassert.com/crumble

In this episode, we speak with Craig Gidney of Google Quantum AI, whose work focuses on the practical realities of building fault-tolerant quantum computers. Gidney explains how seemingly small implementation choices, like how you perform arithmetic, can dominate the cost of entire quantum algorithms.

We explore why factoring small numbers like 15 in Shor's algorithm can be misleadingly easy, and why scaling to larger numbers requires dramatically more resources due to operations like modular multiplication. He breaks down how quantum circuits are often dominated by classical reversible logic, and why optimizing these routines is critical for making quantum computing viable.

The conversation covers quantum error correction, including why T gates are especially expensive, how magic state factories works, and how different hardware architectures change what “cost” even means. Gidney also explains how resource estimates for breaking cryptography have dropped by orders of magnitude and what drove those improvements.

We also dive into the tools he built, including Stim, Quirk, and Crumble, which help researchers simulate noise, visualize circuits, and track how errors propagate through complex systems. Gidney shares his unconventional path into the field, the role of intuition and tooling in discovery, and how software engineering shapes modern quantum research.

Whether you’re interested in quantum computing, error correction, cryptography, or the engineering challenges behind scalable quantum systems, this episode offers a clear and grounded look at what it really takes to turn quantum algorithms into reality.

Follow us for more technical interviews with the world’s greatest scientists:
Twitter: https://x.com/632nmPodcast
Instagram: https://www.instagram.com/632nmpodcast?utm_source=ig_web_button_share_sheet&igsh=ZDNlZDc0MzIxNw==
LinkedIn: https://www.linkedin.com/company/632nm/about/
Substack: https://632nmpodcast.substack.com/

Follow our hosts!
Mikhail Shalaginov: https://www.linkedin.com/in/mikhail-shalaginov/
Yudong Cao: https://www.linkedin.com/in/yudong-cao-25b6a929/

Subscribe:
Apple Podcasts: https://podcasts.apple.com/us/podcast/632nm/id1751170269
Spotify: https://open.spotify.com/show/4aVH9vT5qp5UUUvQ6Uf6OR
Website: https://www.632nm.com

Timestamps:
00:00 - Intro
01:22 - Shor’s Algorithm
04:02 - Why are Arithmetic Operations Important?
08:35 - Why are T-Gates Important for QEC?
13:47 - Motivations for Creating Crumble and STIM
18:40 - Can AI Code Quantum Simulators?
22:32 - Journey into Learning Quantum
26:50 - How to Enter the Field of Quantum Computing
31:16 - From Starcraft to Software Engineering
36:05 - Crumble Demo
53:18 - Quirk Demo
1:00:48 - Estimating Resources for Quantum Computation
1:08:58 - Optimizing Measurements for Computation
1:16:40 - How Many Qubits Do We Actually Need?
1:30:49 - Other Research Areas for Improving Fault Tolerance
1:41:23 - Elliptic Curve Discrete Logarithm Problem
1:46:55 - New Tools for Quantum Computing
1:50:23 - What Would Craig Do with Unlimited Funding?
1:52:28 - How Learning Has Changed for Craig with Experience
1:57:31 - Riding the Wave of Innovation vs Sticking to One Idea
1:59:53 - Advice for Young Scientists

#quantumcomputing #quantumphysics #computerscience #googleai #googlequantum

Tämä jakso on lisätty Podme-palveluun avoimen RSS-syötteen kautta eikä se ole Podmen omaa tuotantoa. Siksi jakso saattaa sisältää mainontaa.

Jaksot(57)

The Hybrid Architecture Behind Quantum Computing | Yonatan Cohen Quantum Machines CTO

The Hybrid Architecture Behind Quantum Computing | Yonatan Cohen Quantum Machines CTO

Why is controlling a quantum hardware becoming one of the biggest challenges in scaling quantum computers?In this episode, we speak with Yonatan Cohen, co-founder and CTO of Quantum Machines, a compan...

18 Elo 1h 52min

How DNA Sequencing Was Discovered By Accident | Walter Gilbert on Biogen, Industry, and Art

How DNA Sequencing Was Discovered By Accident | Walter Gilbert on Biogen, Industry, and Art

How did we go from knowing almost nothing about genes to sequencing the entire human genome?In this episode, we speak with Nobel Prize-winning molecular biologist Walter Gilbert, whose discoveries hel...

4 Elo 2h 8min

How Bacteria Evolved Rotary Motors | Michael Manson

How Bacteria Evolved Rotary Motors | Michael Manson

How do bacteria power one of the most sophisticated molecular machines in nature?In this episode, we speak with Dr. Michael Manson, one of the pioneers of bacterial motility research, whose nearly 50-...

21 Heinä 3h 26min

The Atomic Physics Behind Neutral Atom Computers | Mark Saffman

The Atomic Physics Behind Neutral Atom Computers | Mark Saffman

Why are so many companies betting on neutral atoms to build the first useful quantum computers?In this episode, we speak with Mark Saffman, professor at the University of Wisconsin–Madison and one of ...

30 Kesä 1h 23min

Silicon Photonics and the Future of AI Scaling | John Bowers

Silicon Photonics and the Future of AI Scaling | John Bowers

Why are some of the world's largest technology companies betting on silicon photonics?In this episode, we speak with John Bowers, professor at UC Santa Barbara and one of the pioneers of silicon photo...

16 Kesä 1h 39min

Bioelectricity, Morphogenesis, and Two-Headed Worms | Michael Levin

Bioelectricity, Morphogenesis, and Two-Headed Worms | Michael Levin

How can a flatworm regenerate a complete head after being cut in half?In this episode, we speak with Michael Levin, developmental biologist and director of the Allen Discovery Center at Tufts Universi...

2 Kesä 1h 27min

Quantum Architecture, QAOA, and Cancer Biomarkers | Fred Chong

Quantum Architecture, QAOA, and Cancer Biomarkers | Fred Chong

Are quantum computers changing the way we discover cancer treatments?In this episode, Misha and Yudong spoke with Fred Chong, Seymour Goodman Professor at the University of Chicago, about the future o...

19 Touko 1h 59min

How Quantum Sensors Can Measure Single Electrons | Amir Yacoby

How Quantum Sensors Can Measure Single Electrons | Amir Yacoby

How do you measure something as small as a single electron or map quantum behavior at the nanoscale?In this episode, Misha spoke with Amir Yacoby, professor at Harvard University, about the cutting ed...

5 Touko 2h 1min

Suosittua kategoriassa Tiede

rss-poliisin-mieli
tiedekulma-podcast
utelias-mieli
rss-luontopodi-samuel-glassar-tutkii-luonnon-ihmeita
filocast-filosofian-perusteet
rss-mita-tulisi-tietaa
hippokrateen-vastaanotolla
docemilia
rss-duokkari-ekstra
rss-tiedetta-vai-tarinaa
rss-totuuden-liepeilla
rss-ja-ihminen-loi-alyn-aalto-yliopiston-tekoalypodcast
rss-duodecim-lehti
rss-murremyytin-murtajat
rss-hereilla
sotataidon-ytimessa
rss-kova-luonto