People: Matt Trusheim
Postdoc
Publications
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H. Wang, M. Trusheim, L. Kim, H. Raniwala, and D. Englund. Field programmable spin arrays for scalable quantum repeaters. Nature Communications, 14(704), February 2023.
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H. Raniwala, S. Krastanov, D. Englund, M. Trusheim, L. Hackett, and M. Eichenfield. Piezoelectric Nanocavity Interface for Strong Coupling between a Superconducting Circuit, Phonon, and Spin. Physical Review Applied, 19(064051), June 2023.
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M. Trusheim, D. Englund, Hanfeng Wang, and Laura Kim. Electric-Field Programmable Spin Arrays for Scalable Quantum Repeaters. ArXiv 2022.
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H. Raniwala, S. Krastanov, D. Englund, M. Trusheim, Lisa Hackett, and Matt Eichenfield. Spin-Phonon-Photon Strong Coupling in a Piezomechanical Nanocavity. ArXiv 2022.
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H. Choi, M. Trusheim, D. Englund, and L. Kim. Absorption-Based Diamond Spin Microscopy on a Plasmonic Quantum Metasurface. ACS Photonics November 2021.
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N. Wan, M. Trusheim, K. Chen, L. De Santis, D. Englund, D. Gangloff, R. Debroux, C. P. Michaels, C. Purser, J. A. Martínez, R. A. Parker, A. M. Stramma, E. M. Alexeev, A. C. Ferrari, and A. Atatüre. Quantum control of the tin-vacancy spin qubit in diamond. Phys. Rev. X , 11(041041), November 2021.
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M. Trusheim, D. Englund, K. Jacobs, J. E. Hoffman, D. P. Fahey, and D. A. Braje. A Polariton-Stabilized Spin Clock. ArXiv September 2020.
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M. Trusheim, N. Wan, L. De Santis, D. Gangloff, K. Chen, M. Walsh, E. Bersin, D. Lyzwa, D. Englund, B. Pingault, M. Gündoğan, R. Debroux, C. Purser, J. J. Rose, J. N. Becker, B. Lienhard, I. Paradeisanos, G. Wang, A. R-P. Montblanch, G. Malladi, H. Bakhru, A. C. Ferrari, A. Walmsley, and M. Atatüre. Transform-limited photons from a tin-vacancy spin in diamond. Phys. Rev. Lett., 124(023602), January 2020.
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M. Trusheim, N. Wan, K. Chen, E. Bersin, M. Walsh, D. Englund, C. J. Ciccarino, R. Sundararaman, G. Malladi, B. Lienhard, H. Bakhru, and P. Narang. Lead-Related Quantum Emitters in Diamond. Phys. Rev. B, 99(075430), 2019.
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M. Trusheim. Nanoscale Engineering of Spin-Based Quantum Devices in Diamond. MIT, 2018.