Publications
. “All-Optical Initialization, Readout, And Coherent Preparation Of Single Silicon-Vacancy Spins In Diamond”. Physical Review Letters 113. Physical Review Letters (2014). doi:10.1103/PhysRevLett.113.263602.
. “Coherent Optical Transitions In Implanted Nitrogen Vacancy Centers”. Nano Letters 14. Nano Letters (2014): 1982-1986. doi:{10.1021/nl404836p}.
. “Coherent Optical Transitions In Implanted Nitrogen Vacancy Centers”. Nano Letters 14. Nano Letters (2014): 1982-1986. doi:{10.1021/nl404836p}.
. “Comment On `quantum Quasicrystals Of Spin-Orbit-Coupled Dipolar Bosons' Reply”. Physical Review Letters 113. Physical Review Letters (2014). doi:10.1103/PhysRevLett.113.079603.
. “High Quality-Factor Optical Nanocavities In Bulk Single-Crystal Diamond”. Nature Communications 5. Nature Communications (2014). doi:10.1038/ncomms6718.
. “Highly Excited Rydberg States Of A Rubidium Atom: Theory Versus Experiments”. Physical Review A 89. Physical Review A (2014). doi:10.1103/PhysRevA.89.042506.
. “Many-Body Dynamics Of Dipolar Molecules In An Optical Lattice”. Physical Review Letters 113. Physical Review Letters (2014). doi:10.1103/PhysRevLett.113.195302.
. “Many-Body Localization In Dipolar Systems”. Physical Review Letters 113. Physical Review Letters (2014). doi:10.1103/PhysRevLett.113.243002.
. “Phase Diagram And Excitations Of A Shiba Molecule”. Physical Review B 90. Physical Review B (2014). doi:10.1103/PhysRevB.90.241108.
. “Reply To 'comment On "elementary Formula For The Hall Conductivity Of Interacting Systems" '”. Physical Review B 89. Physical Review B (2014). doi:10.1103/PhysRevB.89.127102.
. “Scattering Resonances And Bound States For Strongly Interacting Rydberg Polaritons”. Physical Review A 90. Physical Review A (2014). doi:10.1103/PhysRevA.90.053804.
. “Time-Resolved Magnetic Sensing With Electronic Spins In Diamond”. Nature Communications 5. Nature Communications (2014). doi:10.1038/ncomms4141.
. “Ultrafast And Fault-Tolerant Quantum Communication Across Long Distances”. Physical Review Letters 112. Physical Review Letters (2014). doi:10.1103/PhysRevLett.112.250501.
. “Understanding Polymorphism In Organic Semiconductor Thin Films Through Nanoconfinement”. Journal Of The American Chemical Society 136. Journal Of The American Chemical Society (2014): 17046-17057. doi:10.1021/ja507179d.
. “Understanding Polymorphism In Organic Semiconductor Thin Films Through Nanoconfinement”. Journal Of The American Chemical Society 136. Journal Of The American Chemical Society (2014): 17046-17057. doi:10.1021/ja507179d.

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