Ted C. Y. Chang (@tediousquantum) 's Twitter Profile
Ted C. Y. Chang

@tediousquantum

assist. prof, ee, National Tsing Hua University(NTHU, Taiwan).
Taiwan(ECE,NTU)➡@GeorgiaTech (Physics, PhD) ➡U.Tokyo➡@RIKEN_QC➡NTHU

ID: 811750423

linkhttps://sites.google.com/view/chienyuanchang/home calendar_today08-09-2012 21:38:50

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John Prisco (@johnjprisco) 's Twitter Profile Photo

IBM said on Friday it can run a key quantum computing error correction algorithm on commonly available chips from AMD, a step toward commercializing super-powerful computers. reuters.com/business/ibm-s…

Jay Gambetta (@jaygambetta) 's Twitter Profile Photo

A few months ago we shared how our Relay-BP algorithm advanced qLDPC decoding. Now we’ve taken the next step—bringing real-time decoding to hardware. We built an FPGA-based Relay-BP decoder for the gross code that fits on a single AMD VU19P and achieves over 8× faster than

A few months ago we shared how our Relay-BP algorithm advanced qLDPC decoding. Now we’ve taken the next step—bringing real-time decoding to hardware. We built an FPGA-based Relay-BP decoder for the gross code that fits on a single AMD VU19P and achieves over 8× faster than
Nanotechnology Papers (@nanotechpapers) 's Twitter Profile Photo

Distributing entanglement between distant semiconductor qubit registers using a shared-control shuttling link. arxiv.org/abs/2510.26860

PRX Quantum (@prx_quantum) 's Twitter Profile Photo

Universal and fault-tolerant quantum computation can be practically achieved—and efficiently scaled up—without intermediate measurements or real-time feedback operations. go.aps.org/3JU8icP

Universal and fault-tolerant quantum computation can be practically achieved—and efficiently scaled up—without intermediate measurements or real-time feedback operations.

go.aps.org/3JU8icP
Nanoacademic Technologies Inc. (@nanoacademic) 's Twitter Profile Photo

Hello dear #quantum engineers, physicists and students! We are continuing our series of QTCAD® posts. This study proposes and experimentally validates a method to operate hashtag#semiconductor spin qubits without relying on individual barrier gates, which are traditionally used

Hello dear #quantum engineers, physicists and students!

We are continuing our series of QTCAD® posts.

This study proposes and experimentally validates a method to operate hashtag#semiconductor spin qubits without relying on individual barrier gates, which are traditionally used