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Publications

Export 1829 results:
[ Author(Desc)] Title Type Year
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Anomalous Nernst effect from a chiral d-density-wave state in underdoped cuprate superconductors, C. Zhang, S. Tewari, V. M. Yakovenko, and S. Das Sarma , PHYSICAL REVIEW B, 78 (2008)
Observation of a many-body dynamical phase transition with a 53-qubit quantum simulator, J. Zhang, G. Pagano, P.. W. Hess, A. Kyprianidis, P.. Becker, H.. Kaplan, A.. V. Gorshkov, Z-X. Gong, and C. Monroe , Nature, 551 (2017)
Berry-phase-mediated topological thermoelectric transport in gapped single and bilayer graphene, C. Zhang, S. Tewari, and S. Das Sarma , PHYSICAL REVIEW B, 79 (2009)
Semiconductor-Metal Nanoparticle Molecules: Hybrid Excitons and the Nonlinear Fano Effect, W. Zhang, A. Govorov, and G. W. Bryant , Phys. Rev. Lett., 97 (2006)
Nonlinear 2D spin susceptibility in a finite magnetic field: Spin-polarization dependence, Y. Zhang, and S. Das Sarma , PHYSICAL REVIEW LETTERS, 96 (2006)
Observation of a discrete time crystal, J. Zhang, P. W. Hess, A. Kyprianidis, P. Becker, A. Lee, J. Smith, G. Pagano, I.-D. Potirniche, A. C. Potter, A. Vishwanath, et al. , Nature, 543, 217-220 (2017)
Probing n-spin correlations in optical lattices, C. Zhang, V.. W. Scarola, and S. Das Sarma , PHYSICAL REVIEW A, 76 (2007)
Chern numbers hiding in time-of-flight images, E. Zhao, N. Bray-Ali, C. J. Williams, I. B. Spielman, and I. Satija , Phys. Rev. A, 84, 063629 (2011)
Quantum Phase Slips in 6 mm Long Niobium Nanowire, W. Zhao, X. Liu, and M.. H. W. Chan , NANO LETTERS, 16, 1173-1178 (2016)
Direct measurement of dynamic alignment in strong fields, K. Zhao, L. N. Elberson, G. Menkir, and W. T. Hill, III , Phys. Rev. A, 74, 033408 (2006)
Photon-efficient quantum key distribution using time-energy entanglement with high-dimensional encoding, T. Zhong, H. Zhou, R. D. Horansky, C. Lee, V. B. Verma, A. E. Lita, A. Restelli, J. C. Bienfang, R. P. Mirin, T. Gerrits, et al. , NEW JOURNAL OF PHYSICS, 17 (2015)
Efficient single-spatial-mode periodically-poled KTiOPO4 waveguide source for high-dimensional entanglement-based quantum key distribution, T. Zhong, F. N. C. Wong, A. Restelli, and J. C. Bienfang , OPTICS EXPRESS, 20, 26868-26877 (2012)
Bosons in a double-well potential: Understanding the interplay between disorder and interaction in a simple model, Q. Zhou, and S. Das Sarma , Phys. Rev. A, 82 (2010)
Condensates induced by interband coupling in a double-well lattice, Q. Zhou, J. V. Porto, and S. Das Sarma , Phys. Rev. B, 83, 195106 (2011)
Quantum-Classical Crossover and Apparent Metal-Insulator Transition in a Weakly Interacting 2D Fermi Liquid, X. Zhou, B.. Schmidt, C.. Proust, G.. Gervais, L.. N. Pfeiffer, K.. W. West, and S. Das Sarma , PHYSICAL REVIEW LETTERS, 107 (2011)
Resistivity saturation in a weakly interacting two-dimensional Fermi liquid at intermediate temperatures, X. Zhou, B.. Schmidt, L.. W. Engel, G.. Gervais, L.. N. Pfeiffer, K.. W. West, and S. Das Sarma , PHYSICAL REVIEW B, 85 (2012)
Boundary effects on quantum entanglement and its dynamics in a detector-field system, R. Zhou, R. O. Behunin, S-Y. Lin, and B-L. Hu , Journal of High Energy Physics (2013)
Interaction-induced excited-band condensate in a double-well optical lattice, Q. Zhou, J. V. Porto, and S. Das Sarma , Phys. Rev. A, 84, 031607 (2011)
Universal Thermometry for Quantum Simulation, Q. Zhou, and T-L. Ho , Phys. Rev. Lett., 106, 225301 (2011)
Signature of Quantum Criticality in the Density Profiles of Cold Atom Systems, Q. Zhou, and T-L. Ho , Phys. Rev. Lett., 105 (2010)
Colossal Magnetoresistance in an Ultraclean Weakly Interacting 2D Fermi Liquid, X. Zhou, B.. A. Piot, M.. Bonin, L.. W. Engel, S. Das Sarma, G.. Gervais, L.. N. Pfeiffer, and K.. W. West , PHYSICAL REVIEW LETTERS, 104 (2010)
Optical logic gates using coherent feedback, Z. Zhou, C. Liu, Y. Fang, J. Zhou, R. T. Glasser, L. Chen, J. Jing, and W. Zhang , APPLIED PHYSICS LETTERS, 101 (2012)
Hardware-efficient fermionic simulation with a cavity-QED system, G. Zhu, Y. Subasi, J. D. Whitfield, and M. Hafezi , NPJ QUANTUM INFORMATION, 4, 16 (2018)
Training of quantum circuits on a hybrid quantum computer, D.. Zhu, N.. M. Linke, M.. Benedetti, K.. A. Landsman, N.. H. Nguyen, C.. H. Alderete, A.. Perdomo-Ortiz, N.. Korda, A.. Garfoot, C.. Brecque, et al. , Science Advances, 5 (2019)
Measurement of many-body chaos using a quantum clock, G. Zhu, M. Hafezi, and T. Grover , PHYSICAL REVIEW A, 94, 062329 (2016)

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