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Publications

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Three-level Haldane-like model on a dice optical lattice, T.. Andrijauskas, E.. Anisimovas, M.. Raciunas, A.. Mekys, V.. Kudriasov, I. B. Spielman, and G.. Juzeliunas , PHYSICAL REVIEW A, 92, 033617 (2015)
Three-photon process for producing a degenerate gas of metastable alkaline-earth-metal atoms, D.. S. Barker, N.. C. Pisenti, B.. J. Reschovsky, and G.. K. Campbell , PHYSICAL REVIEW A, 93, 053417 (2016)
Three-terminal nonlocal conductance in Majorana nanowires: Distinguishing topological and trivial in realistic systems with disorder and inhomogeneous potential, H. Pan, J. D. Sau, and D. S. Sarma , Phys. Rev. B, 103 (2021)
Threshold Dynamics of a Semiconductor Single Atom Maser, Y.. - Y. Liu, J.. Stehlik, C.. Eichler, X.. Mi, T.. R. Hartke, M.. J. Gullans, J.. M. Taylor, and J.. R. Petta , PHYSICAL REVIEW LETTERS, 119 (2017)
Threshold for creating excitations in a stirred superfluid ring, K. C. Wright, R. B. Blakestad, C. J. Lobb, W. D. Phillips, and G. K. Campbell , Phys. Rev. A, 88, 063633 (2013)
Tight-binding theory of ZnS∕CdS nanoscale heterostructures: Role of strain and d orbitals, J. G. Díaz, M. Zieliński, W. Jaskólski, and G. W. Bryant , Phys. Rev. B, 74 (2006)
Tilted loop currents in cuprate superconductors, V. M. Yakovenko , PHYSICA B-CONDENSED MATTER, 460, 159-164 (2015)
Time Evolution of Correlation Functions in Quantum Many-Body Systems, A. M. Alhambra, J. Riddell, and L. Pedro Garcia-Pintos , Phys. Rev. Lett., 124, 110605 (2020)
Time-bin entangled photons from a quantum dot, H. Jayakumar, A. Predojevic, T. Kauten, T. Huber, G. S. Solomon, and G. Weihs , NATURE COMMUNICATIONS, 5 (2014)
Time-dependent multiphoton emission from a quantum dot., S. V. Polyakov, E. B. Flagg, T. Thomay, and G. S. Solomon , 2013 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO) (2013)
Time-information uncertainty relations in thermodynamics, S. B. Nicholson, L. Pedro Garcia-Pintos, A. del Campo, and J. R. Green , Nat. Phys., 16 (2020)
Time-Resolving Quantum Measurement Enables Energy-Efficient, Large-Alphabet Communication, I.A.. Burenkov, M.V.. Jabir, A.. Battou, and S.V.. Polyakov , PRX Quantum, 1, 010308 (2020)
Time-reversal and spatial-reflection symmetry localization anomalies in (2+1)-dimensional topological phases of matter, M. Barkeshli, and M. Cheng , PHYSICAL REVIEW B, 98, 115129 (2018)
Time-Reversal Symmetry Breaking by a (d+id) Density-Wave State in Underdoped Cuprate Superconductors, S. Tewari, C. Zhang, V. M. Yakovenko, and S. Das Sarma , Phys. Rev. Lett., 100 (2008)
Time-reversal symmetry breaking state in dirty three-band superconductor, V. Stanev , SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 28 (2015)
Time-reversal symmetry-breaking superconductivity in epitaxial bismuth/nickel bilayers, X. Gong, M. Kargarian, A. Stern, D. Yue, H. Zhou, X. Jin, V. M. Galitski, V. M. Yakovenko, and J. Xia , Science Advances, 3 (2017)
Time-reversal-invariant C-2-symmetric higher-order topological superconductors, DD. Vu, R-X. Zhang, and D. S. Sarma , Phys. Rev. Res., 2 (2020)
To Close or Not to Close: The Fate of the Superconducting Gap Across the Topological Quantum Phase Transition in Majorana-Carrying Semiconductor Nanowires, T. D. Stanescu, S. Tewari, J. D. Sau, and S. Das Sarma , Phys. Rev. Lett., 109, 266402 (2012)
Tools for designing atom interferometers in a microgravity environment, E. Ashwood, E. Wesley Wells, D. Murat Kurkcuoglu, R. Colson Sapp, C. W. Clark, and M. Edwards , Phys. Rev. A, 99, 043615 (2019)
Topological band crossings in hexagonal materials, J.. Zhang, Y-H.. Chan, C-K.. Chiu, M.. G. Vergniory, L.. M. Schoop, and A.. P. Schnyder , PHYSICAL REVIEW MATERIALS, 2, 074201 (2018)
Topological bands for ultracold atoms, N.. R. Cooper, J.. Dalibard, and I.. B. Spielman , Rev. Mod. Phys., 91, 015005 (2019)
Topological chiral superconductivity with spontaneous vortices and supercurrent in twisted bilayer graphene, F. Wu , Phys. Rev. B, 99, 195114 (2019)
Topological defect lasers, S. Knitter, S. Fatt Liew, W. Xiong, M. I. Guy, G. S. Solomon, and H. Cao , JOURNAL OF OPTICS, 18 (2016)
Topological defect networks for fractons of all types, D. Aasen, D. Bulmash, A. Prem, K. Slagle, and D. J. Williamson , Phys. Rev. Res., 2 (2020)
Topological Exciton Fermi Surfaces in Two-Component Fractional Quantized Hall Insulators, M. Barkeshli, C. Nayak, Z. Papic, A. Young, and M. Zaletel , PHYSICAL REVIEW LETTERS, 121, 026603 (2018)

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