Transduction for Quantum Networks
FOCUS · F67 · ID: 1095645
Presentations
-
Optimization and Comparison of Two-node Gaussian Quantum Networks with Optical-Microwave Transducers
ORAL
–
Presenters
-
Akira Kyle
University of Colorado Boulder
Authors
-
Akira Kyle
University of Colorado Boulder
-
Curtis Rau
University of Colorado Boulder
-
Alex Kwiatkowski
University of Colorado Boulder
-
John D Teufel
National Institute of Standards and Technology Boulder
-
Konrad Lehnert
University of Colorado, Boulder, JILA, JILA/CU Boulder
-
Tasshi Dennis
National Institute of Standards and Technology
-
-
Microwave to optical transduction via engineered dissipation
ORAL
–
Presenters
-
Chiao-Hsuan Wang
National Taiwan University
Authors
-
Chiao-Hsuan Wang
National Taiwan University
-
-
Pump 'n' Dump - High Fidelity Communication with Lossy Microwave Links: Part 1
ORAL
–
Presenters
-
Neel Thakur
Yale University
Authors
-
Neel Thakur
Yale University
-
James D Teoh
Yale University
-
Nathanael P Cottet
ALICE & BOB, Alice and Bob, Yale University
-
Patrick Winkel
Yale University
-
Luke D Burkhart
Keysight Technologies
-
Luigi Frunzio
Yale University
-
Robert J Schoelkopf
Yale University
-
-
Pump 'n' Dump - High Fidelity Communication with Lossy Microwave Links: Part 2
ORAL
–
Presenters
-
James D Teoh
Yale University
Authors
-
James D Teoh
Yale University
-
Neel Thakur
Yale University
-
Nathanael P Cottet
ALICE & BOB, Alice and Bob, Yale University
-
Patrick Winkel
Yale University
-
Luke D Burkhart
Keysight Technologies
-
Luigi Frunzio
Yale University
-
Robert J Schoelkopf
Yale University
-
-
Deterministic generation of shaped single microwave photons using a parametrically driven coupler
ORAL
–
Publication: Deterministic generation of shaped single microwave photons using a parametrically driven coupler (in preparation)
Presenters
-
Jiaying Yang
Chalmers Univ of Tech, Chalmers University of Technology
Authors
-
Jiaying Yang
Chalmers Univ of Tech, Chalmers University of Technology
-
Axel Eriksson
Chalmers Univ of Tech, Chalmers University of Technology
-
Aamir Mohammed Ali
Chalmers Univ of Tech
-
Ingrid Strandberg
Chalmers Univ of Tech
-
Claudia Castillo Moreno
Chalmers Univ of Tech
-
Daniel Perez Lozano
IMEC, imec, Interuniversity Microelectronics Centre
-
Per Delsing
Chalmers Univ of Tech, Chalmers University of Technology
-
Per Persson
Ericsson AB
-
Simone Gasparinetti
Chalmers Univ of Tech
-
-
Teleportation-based microwave-optical quantum transduction enhanced by squeezing
ORAL
–
Presenters
-
JING WU
University of Arizona
Authors
-
JING WU
University of Arizona
-
Linran Fan
University of Arizona, Arizona
-
Quntao Zhuang
University of Southern California
-
-
Bidirectional multi-photon communication between remote superconducting resonators
ORAL
–
Presenters
-
Joel Grebel
University of Chicago
Authors
-
Joel Grebel
University of Chicago
-
Gustav Andersson
University of Chicago
-
Ming-Han Chou
University of Chicago
-
Christopher R Conner
University of Chicago
-
Yash Joshi
University of Chicago
-
Jacob M Miller
University of Chicago
-
Rhys G Povey
University of Chicago
-
Hong Qiao
University of Chicago
-
Xuntao Wu
University of Chicago
-
Haoxiong Yan
University of Chicago
-
Andrew N Cleland
University of Chicago
-
-
Optimal input states for quantifying the performance of continuous-variable unidirectional and bidirectional teleportation
ORAL
–
Publication: arXiv:2210.05007
Presenters
-
Hemant K Mishra
Cornell University
Authors
-
Hemant K Mishra
Cornell University
-
Mark M Wilde
Cornell University, LSU
-
Samad K Oskouei
Islamic Azad University, Iran
-
-
Cavity Piezomechanics for Microwave-Optical Quantum Transduction and Network
ORAL · Invited
–
Publication: 1. X. Han, W. Fu, C.-L. Zou, L. Jiang, and H. X. Tang, Microwave-optical quantum frequency conversion, Optica 8, 1050 (2021)<br>2. X. Han, W. Fu, C. Zhong, C.-L. Zou, Y. Xu, A. A. Sayem, M. Xu, S. Wang, R. Cheng, L. Jiang, and H. X. Tang, Cavity piezo-mechanics for superconducting-nanophotonic quantum interface, Nat. Commun. 11, 3237 (2020)<br>3. C. Zhong, X. Han, and L. Jiang, Quantum transduction with microwave and optical entanglement, arXiv preprint arXiv:2202.04601v1 (2022)<br>4. C. Zhong, X. Han, H. X. Tang, and L. Jiang, Entanglement of microwave-optical modes in a strongly coupled electro-optomechanical system, Phys. Rev. A 101, 032345 (2020)
Presenters
-
Xu Han
Argonne National Laboratory
Authors
-
Xu Han
Argonne National Laboratory
-
Changchun Zhong
University of Chicago
-
Joseph Petrullo
Argonne National Laboratory
-
Wei Fu
Yale University
-
Mingrui Xu
Yale University
-
Hong X Tang
Yale University
-
Liang Jiang
University of Chicago, The University of Chicago
-
-
Transfer of squeezing and entanglement near the exceptional points of three coupled superconducting resonators
ORAL
–
Presenters
-
Wallace Santos Teixeira
Aalto University
Authors
-
Wallace Santos Teixeira
Aalto University
-
Vasilii Vadimov
Aalto University
-
Timm F Mörstedt
QCD Labs, Aalto University, Aalto University
-
Suman Kundu
QCD Labs, Aalto University, Aalto University
-
Mikko Möttönen
IQM Quantum Computers, QCD Labs, Aalto University, Aalto University
-
-
On-demand generation of quantum photonic resource states using a phononic memory
ORAL
–
Presenters
-
Margaret B Pavlovich
Yale University
Authors
-
Margaret B Pavlovich
Yale University
-
Peter T Rakich
Yale University
-
Shruti Puri
Yale University
-
-
Ultrahigh-Q on-chip silicon-germanium microresonators for quantum transduction
ORAL
–
Publication: [1] Schilling et al, Optica 9, 284 (2022)<br>[2] Sandberg et al, Appl. Phys. Lett. 118, 124001 (2021)<br>[3] Timurdogan et al., Nature Photonics 11, 200 (2017).<br>[4] Orcutt et al, Quant. Sci. Tech. 5, 034006 (2020)
Presenters
-
Abram L Falk
IBM TJ Watson Research Center
Authors
-
Abram L Falk
IBM TJ Watson Research Center
-