Mission:
We are a creative team of physicists and engineers working together to understand, design, manufacture, and control coherent quantum systems comprising superconducting artificial atoms (qubits) for quantum information science and technology applications. Our efforts span fundamental research to applied physics and systems engineering.
Recent Publications:
Theory of quasiparticle generation by microwave drives in superconducting qubits
S. Chowdhury, M. Hays, S. R. Jha, K. Serniak, T. P. Orlando, J. A. Grover, W. D. Oliver
arXiv:2505.00773 (2025)
Remote entangling gates for spin qubits in quantum dots using an offset-charge-sensitive transmon coupler
H. H. Kang, I. T. Rosen, M. Hays, J. A. Grover, W. D. Oliver
Physical Review Applied (2025) | arXiv:2408.05164 (2024)
Deterministic remote entanglement using a chiral quantum interconnect
A. Almanakly, B. Yankelevich, M. Hays, B. Kannan, R. Assouly, A. Green, M. Gingras, B. M. Niedzielski, H. Stickler, M. E. Schwartz, K. Serniak, J. I-j. Wang, T. P. Orlando, S. Gustavsson, J. A. Grover, W. D. Oliver
Nature Physics (2025) | arXiv:2408.05164 (2024)
See also: Press Release from MIT News Office
Qubit-state purity oscillations from anisotropic transverse noise
D. A. Rower, K. Hida, L. Ateshian, H. Zhang, J. An, M. Hays, S. E. Muschinske, C. M. McNally, S. C. Alipour-Fard, R. Assouly, I. T. Rosen, B. M. Niedzielski, M. E. Schwartz, K. Serniak, J. A. Grover, W. D. Oliver
Physical Review A 111 (3), 032420 (2025) | arXiv:2409.12303 (2024)
Superfluid stiffness of magic-angle twisted bilayer graphene
M. Tanaka, J. I-j. Wang, T. H. Dinh, D. Rodan-Legrain, S. Zaman, M. Hays, B. Kannan, A. Almanakly, D. K. Kim, B. M. Niedzielski, K. Serniak, M. E. Schwartz, K. Watanabe, T. Taniguchi, J. A. Grover, T. P. Orlando, S. Gustavsson, P. Jarillo-Herrero, W. D. Oliver
Nature 638, 99-105 (2025) | arXiv:2406.13740 (2024)
See also: Press Release from MIT News Office
See also: News and Views by Paritosh Karnatak & Christian Schönenberger