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A synthetic electric force acting on neutral atoms, Y. - J. Lin, R. L. Compton, K. Jiménez-García, W. D. Phillips, J. V. Porto, and I. B. Spielman , Nat. Phys., 7, 531–534 (2011)
Synthetic Gauge Field for Two-Dimensional Time-Multiplexed Quantum Random Walks, H. Chalabi, S. Barik, S. Mittal, T. E. Murphy, M. Hafezi, and E. Waks , Phys. Rev. Lett., 123, 150503 (2019)
Synthetic Gauge Fields in Synthetic Dimensions, A.. Celi, P.. Massignan, J. Ruseckas, N. Goldman, I. B. Spielman, G. Juzeliūnas, and M. Lewenstein , PHYSICAL REVIEW LETTERS, 112, 043001 (2014)
Synthetic gauge potentials for ultracold neutral atoms, Y-J. Lin, and I. B. Spielman , JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS, 48, 183001 (2016)
Synthetic magnetic fields for ultracold neutral atoms, Y. - J. Lin, R. L. Compton, K. Jiménez-García, J. V. Porto, and I. B. Spielman , Nature, 462, 628–32 (2009)
Synthetic Partial Waves in Ultracold Atomic Collisions, R. A. Williams, L. J. LeBlanc, K. Jiménez-García, M. C. Beeler, A. R. Perry, W. D. Phillips, and I. B. Spielman , Science, 335, 314–317 (2011)
Systematic evaluation of an atomic clock at 2 x 10 (-18) total uncertainty, T.. L. Nicholson, S.. L. Campbell, R.. B. Hutson, G.. E. Marti, B.. J. Bloom, R.. L. McNally, W.. Zhang, M.. D. Barrett, M.. S. Safronova, G.. F. Strouse, et al. , NATURE COMMUNICATIONS, 6 (2015)
Tabletop experiments for quantum gravity: a user's manual, D. Carney, P. C. E. Stamp, and J. M. Taylor , Class. Quantum Gravity, 36, 034001 (2019)
A Table-Top Graphene Quantized Hall Standard, A. F. Rigosi, A. R. Panna, S. U. Payagala, G. R. Jones, M. E. Kraft, M. Kruskopf, B-Y. Wu, H-Y. Lee, Y. Yang, D. G. Jarrett, et al. , 2018 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS (CPEM 2018) (2018)
Temperature-dependent compressibility in graphene and two-dimensional systems, Q. Li, E.. H. Hwang, and S. Das Sarma , PHYSICAL REVIEW B, 84 (2011)
Temperature-dependent many-body effects in Dirac-Weyl materials: Interacting compressibility and quasiparticle velocity, F.. Setiawan, and S. Das Sarma , PHYSICAL REVIEW B, 92, 235103 (2015)
Temperature-dependent transport in a sixfold degenerate two-dimensional electron system on a H-Si(111) surface, R. McFarland, T. M. Kott, L. Sun, K. Eng, and B. E. Kane , Phys. Rev. B, 80 (2009)
Temperature-induced decay of persistent currents in a superfluid ultracold gas, A.. Kumar, S.. Eckel, F.. Jendrzejewski, and G.. K. Campbell , PHYSICAL REVIEW A, 95, 021602 (2017)
Temporal and spectral manipulations of correlated photons using a time lens, S. Mittal, V. Vikram Orre, A. Restelli, R. Salem, E. A. Goldschmidt, and M. Hafezi , PHYSICAL REVIEW A, 96 (2017)
Temporally multiplexed storage of images in a gradient echo memory, Q. Glorieux, J. B. Clark, A. M. Marino, Z. Zhou, and P. D. Lett , Optics Express, 20, 12350 (2012)
Testable Signatures of Quantum Nonlocality in a Two-Dimensional Chiral p-Wave Superconductor, S. Tewari, C. Zhang, S. Das Sarma, C. Nayak, and D-H. Lee , Phys. Rev. Lett., 100 (2008)
Thallium 7p lifetimes derived from experimental data and ab initio calculations of scalar polarizabilities, M.. S. Safronova, and P.. K. Majumder , PHYSICAL REVIEW A, 87 (2013)
A theorem for the existence of Majorana fermion modes in spin–orbit-coupled semiconductors, S. Tewari, J. D. Sau, and S. Das Sarma , Annals of Physics, 325, 219–231 (2010)
Theoretical analysis of perfect quantum state transfer with superconducting qubits, F. W. Strauch, and C. J. Williams , Phys. Rev. B, 78 (2008)
Theoretical study of the g factor and lifetime of the 6s6 p P-3(0) state of mercury, S.. G. Porsev, U.. I. Safronova, and M.. S. Safronova , PHYSICAL REVIEW A, 96 (2017)
Theory and applications of atomic and ionic polarizabilities, J. Mitroy, M. S. Safronova, and C. W. Clark , J. Phys. B: At. Mol. Opt. Phys., 43, 202001 (2010)
Theory of 2D Transport in Graphene for Correlated Disorder, Q. Li, E.. H. Hwang, E.. Rossi, and S. Das Sarma , PHYSICAL REVIEW LETTERS, 107 (2011)
Theory of anisotropic plasmons, S. Ahn, and S. Das Sarma , Phys. Rev. B, 103 (2021)
Theory of Bose condensation of light via laser cooling of atoms, C-H. Wang, M.. J. Gullans, J.. V. Porto, W. D. Phillips, and J. M. Taylor , Phys. Rev. A, 99, 031801 (2019)