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Michael G. Scheer
Michael G. Scheer
Graduate student, Department of Physics, Princeton University
Verified email at princeton.edu
Title
Cited by
Cited by
Year
Unsupervised machine learning on a hybrid quantum computer
JS Otterbach, R Manenti, N Alidoust, A Bestwick, M Block, B Bloom, ...
arXiv preprint arXiv:1712.05771, 2017
3102017
Demonstration of universal parametric entangling gates on a multi-qubit lattice
M Reagor, CB Osborn, N Tezak, A Staley, G Prawiroatmodjo, M Scheer, ...
Science advances 4 (2), eaao3603, 2018
2352018
Tierless Programming and Reasoning for {Software-Defined} Networks
T Nelson, AD Ferguson, MJG Scheer, S Krishnamurthi
11th USENIX Symposium on Networked Systems Design and Implementation (NSDI …, 2014
1862014
Parametrically activated entangling gates using transmon qubits
SA Caldwell, N Didier, CA Ryan, EA Sete, A Hudson, P Karalekas, ...
Physical Review Applied 10 (3), 034050, 2018
1622018
Modular control in a quantum computing system
MJ Reagor, WJ Zeng, MJG Scheer, BJ Bloom, NA Tezak, N Didier, ...
US Patent 11,200,508, 2021
602021
Quantum approximate optimization
WJ Zeng, NC Rubin, MJ Reagor, MJG Scheer
US Patent 11,120,357, 2021
312021
Modeling superconducting quantum circuit systems
MJG Scheer, MB Block
US Patent 10,332,024, 2019
212019
Magic angles in twisted bilayer graphene near commensuration: Towards a hypermagic regime
MG Scheer, K Gu, B Lian
Physical Review B 106 (11), 115418, 2022
132022
Flux-based three-dimensional electrodynamic modeling approach to superconducting circuits and materials
DN Pham, W Fan, MG Scheer, HE Türeci
Physical Review A 107 (5), 053704, 2023
52023
Gate formation on a quantum processor
CA Ryan, EC Peterson, MP Da Silva, MJG Scheer, DM Abrams
US Patent 11,900,219, 2024
42024
Computational modeling of decay and hybridization in superconducting circuits
MG Scheer, MB Block
arXiv preprint arXiv:1810.11510, 2018
42018
Twistronics of Kekulé Graphene: Honeycomb and Kagome Flat Bands
MG Scheer, B Lian
Physical review letters 131 (26), 266501, 2023
22023
Kagome and honeycomb flat bands in moiré graphene
MG Scheer, B Lian
Physical Review B 108 (24), 245136, 2023
22023
Modular Quantum Processor Architectures
MJG Scheer, MB Block, BJ Bloom, MJ Reagor, A Papageorge, K Yadav, ...
US Patent App. 17/119,089, 2021
12021
Kagome and Honeycomb flat bands in moire graphene systems
B Lian, M Scheer
Bulletin of the American Physical Society, 2024
2024
Kagome flat bands, fragile topology, quantum spin Hall effect, and more in graphene moire materials
M Scheer, B Lian
APS March Meeting Abstracts 2023, T21. 012, 2023
2023
Twisted Bilayer Graphene Near Commensuration
M Scheer, K Gu, B Lian
APS March Meeting Abstracts 2022, Q56. 008, 2022
2022
Scaling up a superconducting qubit lattice with parametric gates
B Johnson, S Caldwell, C Ryan, R Manenti, M Scheer, M Block, S Fried, ...
APS March Meeting Abstracts 2018, K33. 001, 2018
2018
Quantum approximate optimization on a gate-model superconducting processor
W Zeng, N Rubin, M Curtis, A Polloreno, R Smith, J Angeles, B Bloom, ...
APS March Meeting Abstracts 2017, L46. 007, 2017
2017
White-box and black-box macromodeling for superconducting quantum circuits [Part II]
M Block, M Scheer, E Sete, N Rubin, N Tezak, M Reagor, C Rigetti
APS March Meeting Abstracts 2017, P46. 004, 2017
2017
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