Optical hyerpolarization in nanodiamonds: towards quantum-enhanced NMR/MRI
ORAL
Abstract
In this work, we produce "optically hyperpolarized nanodiamonds", obtaining high bulk 13C polarization (~1%) [1]. We develope a remarkably simple, low-field optical DNP technique that proves to be fully orientation independent [2]. Our technique also allows simple control of the hyperpolarization direction, that only depends on the direction of microwave sweeps across the electron spectrum. This paves for quantum-assisted classical NMR and MRI, allowing for vastly accelerated spectroscopy and imaging with chemical specificity.
1. A. Ajoy, et al. Science Advances, 4, eaar5492 (2018).
2. A. Ajoy, et al. PNAS 1807125115, (2018).
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Presenters
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Ashok Ajoy
University of California, Berkeley, University of California Berkeley, Department of Chemistry, University of California Berkeley
Authors
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Ashok Ajoy
University of California, Berkeley, University of California Berkeley, Department of Chemistry, University of California Berkeley
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Raffi Nazaryan
University of California, Berkeley
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Xudong Lv
University of California, Berkeley
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Kristina Liu
University of California, Berkeley
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Emanuel Druga
University of California, Berkeley
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Jeffrey A Reimer
University of California, Berkeley, Department of Chemical and Biomolecular Engineering, University of California Berkeley
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Carlos A. Meriles
Physics, CUNY, City College of New York, Physics, City College of New York
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Alexander Pines
University of California, Berkeley, Department of Chemistry, University of California Berkeley