Publications
. “Cavity-Mediated Collective Resonant Suppression Of Local Molecular Vibrations”. The Journal Of Physical Chemistry Letters. The Journal Of Physical Chemistry Letters (2025). doi:10.1021/acs.jpclett.5c01124.
. “Dynamical Generation And Transfer Of Nonclassical States In Strongly Interacting Light-Matter Systems In Cavities”. Quantum Science And Technology 10, no. 2. Quantum Science And Technology (2025). doi:10.1088/2058-9565/ada2b8.
. “Measuring The Spectral Form Factor In Many-Body Chaotic And Localized Phases Of Quantum Processors”. Phys. Rev. Lett 134, no. 1. Phys. Rev. Lett (2025). doi:10.1103/PhysRevLett.134.010402.
. “Terahertz Chiral Photonic-Crystal Cavities For Dirac Gap Engineering In Graphene”. Nature Communications 16, no. 2041-1723. Nature Communications (2025). doi:10.1038/s41467-025-60335-x.
. “Sympathetic Cooling And Slowing Of Molecules With Rydberg Atoms”. Phys. Rev. Lett 132, no. 3. Phys. Rev. Lett (2024). doi:10.1103/PhysRevLett.132.033001.
. “Counterflow Dynamics Of Two Correlated Impurities Immersed In A Bosonic Gas”. Phys. Rev. A 105, no. 5. Phys. Rev. A (2022): 053314. doi:10.1103/PhysRevA.105.053314.
. “Dynamics Of Translational And Rotational Thermalization Of Alf Molecules Via Collisions With Cryogenic Helium”. Phys. Rev. A 105, no. 2. Phys. Rev. A (2022): 022808. doi:10.1103/PhysRevA.105.022808.
. “Long-Range Additive And Nonadditive Potentials In A Hybrid System: Ground-State Atom, Excited-State Atom, And Ion”. Physical Review A 104. Physical Review A (2021). doi:10.1103/physreva.104.022807.
. “Obituary For Zdenek Herman ”. Physics Today 74, no. 8. Physics Today (2021): 59. doi:10.1063/PT.3.4820.
. “Long-Range Interaction Of Li(2S2) − Li(2S2) − Li+(1S1)”. Physical Review A 101. Physical Review A (2020): 032702. doi:10.1103/PhysRevA.101.032702.
. “Quantum Virtual Cooling”. Phys. Rev. X 9. Phys. Rev. X (2019): 031013. doi:10.1103/PhysRevX.9.031013.
. “Roadmap On Photonic, Electronic And Atomic Collision Physics {Ii}. Electron And Antimatter Interactions”. Journal Of Physics B: Atomic, Molecular And Optical Physics. Journal Of Physics B: Atomic, Molecular And Optical Physics (2019). doi:10.1088/1361-6455/ab26e0.
. “Roadmap On Photonic, Electronic And Atomic Collision Physics {Ii}. Electron And Antimatter Interactions”. Journal Of Physics B: Atomic, Molecular And Optical Physics. Journal Of Physics B: Atomic, Molecular And Optical Physics (2019). doi:10.1088/1361-6455/ab26e0.
. “Calculations Of Long-Range Three-Body Interactions For He(N0 Ls)-He(N0 Ls)-He(N0' Ll)”. Phys. Rev. A 97. Phys. Rev. A (2018): 042710. doi:10.1103/PhysRevA.97.042710.
. “Cavity-Mediated Collective Spin-Exchange Interactions In A Strontium Superradiant Laser”. Science 361. Science (2018): 259–262. doi:10.1126/science.aar3102.
. “Shattered Time: Can A Dissipative Time Crystal Survive Many-Body Correlations?”. New Journal Of Physics 20. New Journal Of Physics (2018): 123003. doi:10.1088/1367-2630/aaf18b.
. “Absorption Spectra Of Superconducting Qubits Driven By Bichromatic Microwave Fields”. Phys. Rev. B 96. Phys. Rev. B (2017): 174518. doi:10.1103/PhysRevB.96.174518.
. “Control Of Light By Curved Space In Nanophotonic Structures”. Nature Photonics 11. Nature Photonics (2017): 664-670. doi:10.1038/s41566-017-0008-0.
. “State-Resolved Attosecond Reversible And Irreversible Dynamics In Strong Optical Fields”. Nat Phys advance online publication. Nat Phys (2017): –. http://dx.doi.org/10.1038/nphys4027.
. “Calculations Of Long-Range Three-Body Interactions For Li(22S) - Li(22S) - Li(22P)”. Phys. Rev. A 94. Phys. Rev. A (2016): 022705. doi:10.1103/PhysRevA.94.022705.
. “Possibility Of Triple Magic Trapping Of Clock And Rydberg States Of Divalent Atoms In Optical Lattices”. Journal Of Physics B: Atomic, Molecular And Optical Physics 49. Journal Of Physics B: Atomic, Molecular And Optical Physics (2016): 144004. http://stacks.iop.org/0953-4075/49/i=14/a=144004.
. “Quantum Hall Physics With Cold Atoms In Cylindrical Optical Lattices”. Physical Review A 93. Physical Review A (2016): 013604.
. “Quantum Network Of Atom Clocks: A Possible Implementation With Neutral Atoms”. Phys. Rev. Lett 117. Phys. Rev. Lett (2016): 060506. doi:10.1103/PhysRevLett.117.060506.
. “Rotation Of Cold Molecular Ions Inside A Bose-Einstein Condensate”. Phys. Rev. A 94. Phys. Rev. A (2016): 041601. doi:10.1103/PhysRevA.94.041601.
. “Advances In Molecular Quantum Chemistry Contained In The Q-Chem 4 Program Package”. Molecular Physics 113. Molecular Physics (2015): 184-215. doi:10.1080/00268976.2014.952696.
. “Advances In Molecular Quantum Chemistry Contained In The Q-Chem 4 Program Package”. Molecular Physics 113. Molecular Physics (2015): 184-215. doi:10.1080/00268976.2014.952696.
. “Advances In Molecular Quantum Chemistry Contained In The Q-Chem 4 Program Package”. Molecular Physics 113. Molecular Physics (2015): 184-215. doi:10.1080/00268976.2014.952696.
. “All-Optical Control Of A Single Electron Spin In Diamond”. Physical Review A 91. Physical Review A (2015). doi:{10.1103/PhysRevA.91.021801}.
. “Phonon-Induced Population Dynamics And Intersystem Crossing In Nitrogen-Vacancy Centers”. Physical Review Letters 114. Physical Review Letters (2015). doi:10.1103/PhysRevLett.114.145502.
. “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.

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