Po Samutpraphoot (@polnops) 's Twitter Profile
Po Samutpraphoot

@polnops

ID: 1355990583676788736

calendar_today31-01-2021 21:25:28

47 Tweet

90 Followers

261 Following

Javier Cerrillo (@cerrillo_javi) 's Twitter Profile Photo

Our publication today in Science Magazine : Andreev qubits added to the list of quantum capable technologies. (Coherent manipulation of an Andreev spin qubit science.sciencemag.org/content/373/65… )

Cristina Benea-Chelmus (@beneachelmus) 's Twitter Profile Photo

That magic moment when your #first #lastauthor publication appears online 🤩😇🙏. It is a post deadline paper at CLEO US 2021 and great #teamwork. Stay tuned for a comprehensive article! ❤️ OSA | Terahertz Generation in Thin-film Lithium Niobate Platform osapublishing.org/abstract.cfm?u…

Po Samutpraphoot (@polnops) 's Twitter Profile Photo

Our results on two-atom entanglement with a nanophotonic cavity have been published today in Science science.sciencemag.org/content/early/…

Po Samutpraphoot (@polnops) 's Twitter Profile Photo

Our friends at ICFO shedding light on how we might be able to do single-photon optomechanics with a cavity QED system with trapped atoms. Congrats Javier Argüello Luengo and Darrick!

Trung Phan (@trungtphan) 's Twitter Profile Photo

ASML is the most important company you've never heard of. The $300B+ Dutch firm makes the machines that make semiconductors. Each one costs $150m and access to them are a huge geopolitical flashpoint. Here's a breakdown 🧵

ASML is the most important company you've never heard of.

The $300B+ Dutch firm makes the machines that make semiconductors. Each one costs $150m and access to them are a huge geopolitical flashpoint. 

Here's a breakdown 🧵
Federico Capasso (@quantumcascade) 's Twitter Profile Photo

Correlated errors: if a high-energy cosmic ray hits a quantum computer , it can affect everything at once! nature.com/articles/s4158…

Simon Gustavsson (@simon_mit) 's Twitter Profile Photo

Very exciting work by Joel Wang & Megan Yamoah, building a compact transmon qubit using an hBN-based parallel-plate capacitor. This can be a game changer for miniaturizing superconducting qubits! arxiv.org/abs/2109.00015

Very exciting work by Joel Wang & Megan Yamoah, building a compact transmon qubit using an hBN-based parallel-plate capacitor.  This can be a game changer for miniaturizing superconducting qubits!
arxiv.org/abs/2109.00015
IonQ (@ionq_inc) 's Twitter Profile Photo

Check out this very cool result — super high-fidelity "laser-free" microwave gates — in this week's @nature from our friends at National Institute of Standards and Technology/CU Boulder 🦬, including IonQ technical advisor Dave Wineland. Ions rule! nature.com/articles/s4158…

Andreas Wallraff (@andreasateth) 's Twitter Profile Photo

Check out our newest Quantum Device Lab ETH Physics ETH Zurich #Zurich paper on "Realizing #Quantum Convolutional #Neural #Networks on a Superconducting Quantum #Processor to Recognize Quantum Phases" which appeared on arXiv.org today: arxiv.org/abs/2109.05909

Check out our newest <a href="/qudev/">Quantum Device Lab</a> <a href="/ETH_physics/">ETH Physics</a> <a href="/ETH_en/">ETH Zurich</a> #Zurich paper on "Realizing #Quantum Convolutional #Neural #Networks on a Superconducting Quantum #Processor to Recognize Quantum Phases" which appeared on <a href="/arxiv/">arXiv.org</a> today:
arxiv.org/abs/2109.05909
Eric Holland (@ericquantum) 's Twitter Profile Photo

I suspect I'm not the only #quantum physicist that grew up fascinated by miniaturization. arxiv.org/abs/2108.11519 is the third (4th?) paper this year moving towards miniaturizing superconducting qubits. Congrats: @coreyraemcrae , National Institute of Standards and Technology, UCSB Quantum Foundry, & The Robert Mehrabian College of Engineering

I suspect I'm not the only #quantum physicist that grew up fascinated by miniaturization.  arxiv.org/abs/2108.11519 is the third (4th?) paper this year moving towards miniaturizing superconducting qubits.  Congrats: @coreyraemcrae , <a href="/NIST/">National Institute of Standards and Technology</a>, <a href="/QuantumFoundry/">UCSB Quantum Foundry</a>, &amp; <a href="/UCSBengineering/">The Robert Mehrabian College of Engineering</a>
Lisa Su (@lisasu) 's Twitter Profile Photo

Honored to be named to the U.S. President’s Council of Advisors on Science and Technology (PCAST) to work with an amazing group of people on important issues impacting our nation. whitehouse.gov/PCAST/

MIT Technology Review (@techreview) 's Twitter Profile Photo

This is the $9 billion machine that saved Moore’s Law. “This is accelerating faster than a fighter jet,” says an engineer on the team that built it, “so you have one of the fastest things on earth settling at pretty much the smallest spot of anything.” trib.al/8skGyNI

Eric Holland (@ericquantum) 's Twitter Profile Photo

Happy New Year! 🥳 In the spirit of 2022, here's two great new additions to arXiv.org on using nuclear spin degrees of freedom in Ytterbium for universal #quantum computation. Princeton University: arxiv.org/abs/2112.06799 JILA & @PhysicsColorado: arxiv.org/abs/2112.06732

Happy New Year!  🥳

In the spirit of 2022, here's two great new additions to <a href="/arxiv/">arXiv.org</a> on using nuclear spin degrees of freedom in Ytterbium for universal #quantum computation.  

<a href="/Princeton/">Princeton University</a>: arxiv.org/abs/2112.06799

<a href="/JILAscience/">JILA</a> &amp; @PhysicsColorado: arxiv.org/abs/2112.06732
Sam Zeloof (@szeloof) 's Twitter Profile Photo

This $149 XYZ-theta stage is unreasonably good value. How do they do it? With things like this you can build a (shitty) semiconductor fab for like $1,500 (~10x reduction from my lab, 10kX from industry) amazon.com/dp/B083LSYHJQ/

This $149 XYZ-theta stage is unreasonably good value. How do they do it? With things like this you can build a (shitty) semiconductor fab for like $1,500
(~10x reduction from my lab, 10kX from industry)

amazon.com/dp/B083LSYHJQ/
Yang Liu (@yliu_oe) 's Twitter Profile Photo

The missing part of photonic integrated circuits is now available: high-output-power Er-based amplifiers using ion implantation. This work makes pluggable amplifiers, integrated ultraslow-noise lasers, and high-pulse-energy mode-locked lasers possible. science.org/doi/10.1126/sc…

Alp Sipahigil (@alpsipahigil) 's Twitter Profile Photo

Our work on indistinguishable photon generation from a color center in silicon photonics has now been published: nature.com/articles/s4146… Congrats to Lukasz and Po Samutpraphoot for leading this work!