Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Xiruo Yan"'
Autor:
Xiruo Yan, Sebastian Gitt, Becky Lin, Donald Witt, Mahssa Abdolahi, Abdelrahman Afifi, Adan Azem, Adam Darcie, Jingda Wu, Kashif Awan, Matthew Mitchell, Andreas Pfenning, Lukas Chrostowski, Jeff F. Young
Publikováno v:
APL Photonics, Vol 6, Iss 7, Pp 070901-070901-27 (2021)
Universal quantum computing holds the promise to fundamentally change today’s information-based society, yet a hardware platform that will provide a clear path to fault-tolerant quantum computing remains elusive. One recently proposed platform invo
Externí odkaz:
https://doaj.org/article/9e07920539b940eeb0318aeb770d4c43
Autor:
Joshua Fabian, Wesley Cassidy, Lesley Hill, Kassandra Hawes, David Neilson, Adan Azem, Xiruo Yan, Donald Witt, Matthew Mitchell, Andreas Pfenning, Lukas Chrostowski, Jeff F. Young
Publikováno v:
2022 IEEE Photonics Conference (IPC).
Autor:
Andreas Pfenning, Xiruo Yan, Sebastian Gitt, Joshua Fabian, Becky Lin, Donald Witt, Abdelrahman Afifi, Adan Azem, Adam Darcie, Jingda Wu, Matthew Mitchell, Kashif Awan, Lukas Chrostowski, Jeff F. Young
Publikováno v:
Silicon Photonics XVII.
Autor:
Xiruo Yan
Publikováno v:
Photonics for Quantum 2020.
We describe an architecture for fault-tolerant universal quantum computation suited for donor qubits in silicon, coupled by photonic interconnects. The required quantum primitives are local measurements/unitaries, and a non-local Pauli measurement.
Autor:
Jeff F. Young, Adam Darcie, Andreas Pfenning, Iman Taghavi, Donald M. Witt, Becky Lin, David M. Weekes, Abdelrahman E. Afifi, Mustafa Hammood, Matthew Mitchell, Mahssa Abdolahi, Lukas Chrostowski, Nicolas A. F. Jaeger, Steven Gou, Xiruo Yan, Jingda Wu, Kashif M. Awan, Jaspreet Jhoja
Publikováno v:
Silicon Photonics XVI.
The goal of SiEPICfab is to conduct research in the fabrication of silicon photonic devices and photonic integrated circuits, and to make leading-edge silicon photonic manufacturing accessible to Canadian and international academics and industry. SiE
Autor:
Adam Darcie, Sebastian Gitt, Becky Lin, Donald M. Witt, Adan Azem, Abdelrahman E. Afifi, Kashif M. Awan, Mahssa Abdolahi, Jingda Wu, Jeff F. Young, Xiruo Yan, Lukas Chrostowski, Matthew Mitchell, Andreas Pfenning
Publikováno v:
APL Photonics, Vol 6, Iss 7, Pp 070901-070901-27 (2021)
Universal quantum computing holds the promise to fundamentally change today’s information-based society, yet a hardware platform that will provide a clear path to fault-tolerant quantum computing remains elusive. One recently proposed platform invo
Publikováno v:
Advanced Quantum Technologies. 3:2000011
We describe an architecture for fault-tolerant universal quantum computation suited for donor qubits in silicon, coupled by photonic interconnects. The required quantum primitives are local measurements/unitaries, and a non-local Pauli measurement.
Publikováno v:
2018 IEEE Photonics Society Summer Topical Meeting Series (SUM).
A fractured planar photonic crystal cavity is designed so that its resonant frequency can be mechanically tuned over a range of tens of nanometers while maintaining a quality factor in excess of 100,000. Experimental data validates the tuning capabil
Publikováno v:
Conference on Lasers and Electro-Optics.
A fractured planar photonic crystal microcavity is designed to be mechanically tunable while maintaing a quality factor of >1 × 105, and a mode volume ∼ 0.3(λ/n)3. Its optomechanical coefficient is ∼15 GHz/nm, at mid-IR wavelengths.