V
Victor M. Acosta
Researcher at University of New Mexico
Publications - 101
Citations - 6174
Victor M. Acosta is an academic researcher from University of New Mexico. The author has contributed to research in topics: Diamond & Magnetic field. The author has an hindex of 35, co-authored 97 publications receiving 5068 citations. Previous affiliations of Victor M. Acosta include University of California, Berkeley & Google.
Papers
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Journal ArticleDOI
Temperature Dependence of the Nitrogen-Vacancy Magnetic Resonance in Diamond
Victor M. Acosta,Erik Bauch,Erik Bauch,Micah P. Ledbetter,A. Waxman,Louis-S. Bouchard,Dmitry Budker,Dmitry Budker +7 more
TL;DR: The temperature dependence of the ZFS parameters presents a significant challenge for diamond magnetometers and may ultimately limit their bandwidth and sensitivity.
Journal ArticleDOI
Diamonds with a high density of nitrogen-vacancy centers for magnetometry applications
Victor M. Acosta,Erik Bauch,Erik Bauch,Micah P. Ledbetter,Charles Santori,Kai-Mei C. Fu,Paul E. Barclay,Raymond G. Beausoleil,H. Linget,Jean-François Roch,François Treussart,S. Chemerisov,Wojciech Gawlik,Dmitry Budker,Dmitry Budker +14 more
TL;DR: In this paper, the optical and spin-relaxation properties of millimeter-scale diamond samples were characterized using confocal microscopy, visible and infrared absorption, and optically detected magnetic resonance.
Journal ArticleDOI
Coupling of nitrogen-vacancy centers to photonic crystal cavities in monocrystalline diamond.
Andrei Faraon,Andrei Faraon,Charles Santori,Zhihong Huang,Victor M. Acosta,Raymond G. Beausoleil +5 more
TL;DR: The zero-phonon transition rate of a nitrogen-vacancy center is enhanced by a factor of ∼70 by coupling to a photonic crystal resonator fabricated in monocrystalline diamond using standard semiconductor fabrication techniques.
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Temperature- and magnetic-field-dependent longitudinal spin relaxation in nitrogen-vacancy ensembles in diamond.
Andrey Jarmola,Andrey Jarmola,Victor M. Acosta,Victor M. Acosta,Kasper Jensen,S. Chemerisov,Dmitry Budker,Dmitry Budker +7 more
TL;DR: An experimental study of the longitudinal electron-spin relaxation time (T1) of negatively charged nitrogen-vacancy ensembles in diamond as a function of temperature and magnetic field reveals three processes responsible for T1 relaxation.
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Quantum memories: emerging applications and recent advances.
Khabat Heshami,Duncan G. England,Peter C. Humphreys,Philip J. Bustard,Victor M. Acosta,Joshua Nunn,Benjamin J. Sussman +6 more
TL;DR: Some of the emerging applications of quantum memories in optical signal processing, quantum computation and non-linear optics are outlined.