Publications
. “Pamop: Large-Scale Calculations Supporting Experiments And Astrophysical Applications”. In High Performance Computing In Science And Engineering ' 17. High Performance Computing In Science And Engineering ' 17. Cham, Switzerland: Springer International Publishing, 2018.
. “Photodissociation Of Cs From Excited Rovibrational Levels”. The Astrophysical Journal 858. The Astrophysical Journal (2018): 10. doi:10.3847/1538-4357/aab5b9.
. “Possible Many-Body Localization In A Long-Lived Finite-Temperature Ultracold Quasineutral Molecular Plasma”. Phys. Rev. Lett 120. Phys. Rev. Lett (2018): 110601. doi:10.1103/PhysRevLett.120.110601.
. “Rate Constants For The Formation Of {Cs} By Radiative Association”. Monthly Notices Of The Royal Astronomical Society 479. Monthly Notices Of The Royal Astronomical Society (2018): 4727–4734. doi:10.1093/mnras/sty1739.
. “Theory Of Excitation Of Rydberg Polarons In An Atomic Quantum Gas”. Phys. Rev. A 97. Phys. Rev. A (2018): 022707. doi:10.1103/PhysRevA.97.022707.
. “Theory Of Excitation Of Rydberg Polarons In An Atomic Quantum Gas”. Phys. Rev. A 97. Phys. Rev. A (2018): 022707. doi:10.1103/PhysRevA.97.022707.
. “Ultracold Rydberg Molecules”. Nature Communications 9. Nature Communications (2018): 1965. doi:10.1038/s41467-018-04135-6.
. “Ultracold Rydberg Molecules”. Nature Communications 9. Nature Communications (2018): 1965. doi:10.1038/s41467-018-04135-6.
. “Ultracold Rydberg Molecules”. Nature Communications 9, no. 1. Nature Communications (2018). doi:10.1038/s41467-018-04135-6.
. “Ultracold Rydberg Molecules”. Nature Communications 9, no. 1. Nature Communications (2018). doi:10.1038/s41467-018-04135-6.
. “Universal Many-Body Response Of Heavy Impurities Coupled To A Fermi Sea: A Review Of Recent Progress”. Reports On Progress In Physics 81. Reports On Progress In Physics (2018): 024401. http://stacks.iop.org/0034-4885/81/i=2/a=024401.
. “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.
. “Bipolarons Bound By Repulsive Phonon-Mediated Interactions”. Phys. Rev. A 96. Phys. Rev. A (2017): 063619. doi:10.1103/PhysRevA.96.063619.
. “Control Of Light By Curved Space In Nanophotonic Structures”. Nature Photonics 11. Nature Photonics (2017): 664-670. doi:10.1038/s41566-017-0008-0.
. “Control Of Light By Curved Space In Nanophotonic Structures”. Nature Photonics 11. Nature Photonics (2017): 664-670. doi:10.1038/s41566-017-0008-0.
. “Curved-Space Topological Phases In Photonic Lattices”. Phys. Rev. A 96. Phys. Rev. A (2017): 041804. doi:10.1103/PhysRevA.96.041804.
. “Detecting Continuous Gravitational Waves With Superfluid 4He”. New J. Phys 19. New J. Phys (2017).
. “Detecting Continuous Gravitational Waves With Superfluid 4He”. New J. Phys 19. New J. Phys (2017).
. “Dissociative Recombination Of Hcl+”. The Journal Of Chemical Physics 147. The Journal Of Chemical Physics (2017): 084304. doi:10.1063/1.5000266.
. “Electric-Field Noise From Carbon-Adatom Diffusion On A Au(110) Surface: First-Principles Calculations And Experiments”. Phys. Rev. A 95. Phys. Rev. A (2017): 033407. doi:10.1103/PhysRevA.95.033407.
. “Electric-Field Noise From Carbon-Adatom Diffusion On A Au(110) Surface: First-Principles Calculations And Experiments”. Phys. Rev. A 95. Phys. Rev. A (2017): 033407. doi:10.1103/PhysRevA.95.033407.
. “Electric-Field Noise From Carbon-Adatom Diffusion On A Au(110) Surface: First-Principles Calculations And Experiments”. Phys. Rev. A 95. Phys. Rev. A (2017): 033407. doi:10.1103/PhysRevA.95.033407.
. “Electric-Field Noise From Carbon-Adatom Diffusion On A Au(110) Surface: First-Principles Calculations And Experiments”. Phys. Rev. A 95. Phys. Rev. A (2017): 033407. doi:10.1103/PhysRevA.95.033407.
. “Electronic Structure Of Ultralong-Range Rydberg Penta-Atomic Molecules With Two Polar Diatomic Molecules”. Phys. Rev. A 96. Phys. Rev. A (2017): 052509. doi:10.1103/PhysRevA.96.052509.
. “Electronic Structure Of Ultralong-Range Rydberg Penta-Atomic Molecules With Two Polar Diatomic Molecules”. Phys. Rev. A 96. Phys. Rev. A (2017): 052509. doi:10.1103/PhysRevA.96.052509.
. “H− Photodetachment And Radiative Attachment For Astrophysical Applications”. Journal Of Physics B: Atomic, Molecular And Optical Physics 50. Journal Of Physics B: Atomic, Molecular And Optical Physics (2017): 114001. http://stacks.iop.org/0953-4075/50/i=11/a=114001.
. “H− Photodetachment And Radiative Attachment For Astrophysical Applications”. Journal Of Physics B: Atomic, Molecular And Optical Physics 50. Journal Of Physics B: Atomic, Molecular And Optical Physics (2017): 114001. http://stacks.iop.org/0953-4075/50/i=11/a=114001.
. “Probing Many-Body Dynamics On A 51-Atom Quantum Simulator”. Nature 551. Nature (2017). doi:doi:10.1038/nature24622.
. “Rate Constants For The Formation Of Sio By Radiative Association”. Monthly Notices Of The Royal Astronomical Society 471, no. 2. Monthly Notices Of The Royal Astronomical Society (2017): 2490. doi:10.1093/mnras/stx1715.
. “Special Issue On The Atomic And Molecular Processes In The Ultracold Regime, The Chemical Regime And Astrophysics”. Journal Of Physics B: Atomic, Molecular And Optical Physics 50. Journal Of Physics B: Atomic, Molecular And Optical Physics (2017): 140202. http://stacks.iop.org/0953-4075/50/i=14/a=140202.

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