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|a Clevenson, Hannah A
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|a Lincoln Laboratory
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|a Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
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|a Massachusetts Institute of Technology. Research Laboratory of Electronics
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|a Clevenson, Hannah A
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|a Chen, Edward H
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|a Dolde, Florian
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|a Teale, Carson Arthur
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|a Englund, Dirk R.
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|a Braje, Danielle A.
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|a Chen, Edward H
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|a Dolde, Florian
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|a Teale, Carson Arthur
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|a Englund, Dirk R.
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|a Braje, Danielle A.
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|a Diamond-nitrogen-vacancy electronic and nuclear spin-state anticrossings under weak transverse magnetic fields
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|b American Physical Society,
|c 2017-03-24T20:14:51Z.
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|z Get fulltext
|u http://hdl.handle.net/1721.1/107700
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|a We report on detailed studies of electronic and nuclear spin states in the diamond-nitrogen-vacancy (NV) center under weak transverse magnetic fields. We numerically predict and experimentally verify a previously unobserved NV hyperfine level anticrossing (LAC) occurring at bias fields of tens of gauss-two orders of magnitude lower than previously reported LACs at ∼ 500 and ∼ 1000 G axial magnetic fields. We then discuss how the NV ground-state Hamiltonian can be manipulated in this regime to tailor the NV's sensitivity to environmental factors and to map into the nuclear spin state.
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|a United States. Dept. of Defense. Assistant Secretary of Defense for Research & Engineering (Air Force Contract No. FA8721-05-C-0002)
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|a United States. Office of Naval Research (N00014-13-1-0316)
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|a United States. National Aeronautics and Space Administration ( Office of the Chief Technologist's Space Technology Research Fellowship)
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|a en
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|a Article
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|t Physical Review A
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