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Probing Spin Dynamics on Diamond Surfaces Using a Single Quantum Sensor

delete2022-12-14
delete38
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OA
AI
B
Bo Dwyer
L
Lila V. H. Rodgers
E
Elana Urbach
D
Dolev Bluvstein
S
Sorawis Sangtawesin
H
Hengyun Zhou
Y
Yahia Nassab
M
Mattias Fitzpatrick
Z
Zhiyang Yuan
K
Kristiaan De Greve
E
Eric L. Peterson
H
Helena S. Knowles
T
Tamara Šumarac
J
Jyh‐Pin Chou
Á
Ádám Gali
D
Dobrovitski, V. V.
M
Mikhail D. Lukin
N
Nathalie P. de Leon *
DOI:10.1103/PRXQuantum.3.040328delete
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Abstract

Abstract

En 中文
Understanding the dynamics of a quantum bit's environment is essential for the realization of practical systems for quantum information processing and metrology. We use single nitrogen-vacancy (NV) centers in diamond to study the dynamics of a disordered spin ensemble at the diamond surface. Specifically, we reduce the density of dark surface spins to interrogate their contribution to the decoherence of shallow NV center spin qubits. When the average surface spin spacing exceeds the NV center depth, we find that the surface spin contribution to the NV center free induction decay can be described by a stretched expo-nential with variable power n. We show that these observations are consistent with a model in which the spatial positions of the surface spins are fixed for each measurement, but some of them reconfigure between measurements. In particular, we observe a depth-dependent critical time associated with a dynamical tran-sition from Gaussian (n = 2) decay to n = 2/3, and show that this transition arises from the competition between the small decay contributions of many distant spins and strong coupling to a few proximal spins at the surface. These observations demonstrate the potential of a local sensor for understanding complex systems and elucidate pathways for improving and controlling spin qubits at the surface.
Keywords:
ELECTRON

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PRX Quantum
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11
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9.0K

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HUN-REN Wigner Research Centre for Physics
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national changhua university of education
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Hungarian Research Network
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Harvard University
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Princeton University
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Suranaree University of Technology
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