What podcasts say about Kazuhiro Nakashoji
Every statement, with the speaker, the exact quote and the moment it was said.
What Kazuhiro Nakashoji has said on podcasts
31 statements · 18 positive · 10 negative · 1 mixed · 2 neutral
Quantum computing’s prolonged timeline primarily reflects hardware difficulty.
“That's really question more so of difficulty parts coming from hardware itself.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 3:02
Useful quantum calculations require assembling many quantum processing units.
“we have to make it bunch of number of QPU to do very useful calculation.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 3:26
Quantum computers are not generally faster than CPUs or GPUs.
“Once we use quantum computers, maybe people believe that, oh, maybe we can do more nice, very fast calculation compared to CPU or gpu. But this is. First of all, it's not correct.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 4:21
Quantum computers apply mainly to particular problem classes rather than general computation.
“We can apply quantum computer for particular questions or problems.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 4:37
Estimated qubit requirements for some quantum problems have fallen to approximately 10,000.
“Close to for example 10,000 qubit.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 6:26
Current estimated qubit requirements are about one percent of estimates from ten years earlier.
“Just 1% of what we expected 10 years ago.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 6:30
Required and available qubit counts may converge around 2030.
“So we believe that we reach to like two of them meet each other's close to 2030 for example in next four to five years.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 7:17
Some quantum computers are already installed in data centers.
“some of the quantum computer already installed into data center already.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 7:36
Quantum calculations currently produce many errors.
“once we do quantum calculations. Yeah, they made a lot of error.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 8:04
Quantum computers require quantum error correction to preserve information.
“we have to correct this error so called. We call it quantum error collections.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 8:20
Quantum error correction can enable scalable, robust quantum computers.
“by doing so we can create very scalable, very robust quantum computer.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 8:36
Japan lacks a well-established method for transferring university IP into startups.
“at this moment there's not very solid methodology how to use IP from university to startup.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 14:15
Yakumo expects approximately eighteen months of runway after its seed extension.
“for our case, we expected, for example, 18 months.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 16:14
A coordinated quantum hardware supply chain is crucial for industrializing quantum computers.
“this kind of supply chain is very crucial for industrialization.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 29:33
AI language models are already used for quantum error correction.
“we already use a lot of AI LLM transformer for example to do content collection.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 32:06
Quantum computing currently lacks practical applications for AI.
“at this moment there's no practical or tangible example about quantum for AI.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 32:30
Practical quantum computing applications for AI may arrive relatively soon.
“We believe the future is not super, super far away.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 32:54
Quantum-generated data could improve AI model capabilities.
“Why don't we use this data to make AI even smarter? We can differentiate the model by doing so.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 33:57
Quantum-for-AI applications could make quantum computing companies highly profitable.
“I believe quantum for AI. Once this kind of happens, quantum computer company makes tons of money.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 34:10
For some programs, quantum computers may consume less energy than classical computers.
“Then we do a particular program solving the num. The energy that quantum computer use even less than classical computers.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 35:03
Quantum computers will not replace classical computers entirely.
“quantum computers take over all the position of the classical computers, just one part of it.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 35:42
Quantum computers could substantially accelerate classical computing.
“But I believe quantum computer could be the very, very great accelerator to make classical computer even smarter.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 35:49
Quantum threats to current cryptography require caution within five to ten years.
“in next five to 10 years we have to be very, very be careful about it.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 37:02
A sufficiently large quantum processor can break RSA cryptography.
“if you reach to certain amount of the size of the qubit qpu we can solve RSA cryptography.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 37:26
Quantum computers will not break RSA cryptography within two years.
“But it won't be happening next two years.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 37:34
Adversaries can collect encrypted data now and decrypt it with future quantum computers.
“take now encrypted data, solve later.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 38:16
The United States aims to have a useful commercial quantum computer by 2028.
“United States license announced that they tried to launch or they want to have very useful commercial computer by 2028.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 39:02
China is among the leading countries in quantum computing.
“They, they doing very, very well. So I think one of the top country is China.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 39:54
Neutral-atom quantum computers may reduce qubit costs by approximately one hundredfold.
“we use a neutral atoms. And if you're thinking about the like, you know, the price of qubit, maybe It's. It's maybe 100 times cheaper.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 42:15
Yakumo plans to sell full-stack quantum computers within five years.
“we thinking about selling our one full stack corner computers next five years.”
Open the episode · Why quantum has been "10 years away" for 30 years | E2316Listen at 42:40
Statements are attributed to the speaker as said on the episode and reflect their view at the time, not PodLume's. They are not advice.