Publications

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X
X. Xu and Taylor, J. M., Optomechanically-induced chiral transport of phonons in one dimension, 2017.
S. Xu and Swingle, B., Accessing scrambling using matrix product operators, 2018.
K. Xu, Liu, Y., Abo-Shaeer, J. R., Mukaiyama, T., Chin, J. K., Miller, D. E., Ketterle, W., Jones, K. M., and Tiesinga, E., Sodium Bose-Einstein Condensates in an Optical Lattice, Physical Review A, vol. 72, no. 4, 2005.
H. Xu, Kemiktarak, U., Fan, J., Ragole, S., Lawall, J., and Taylor, J. M., Observation of optomechanical buckling phase transitions, 2015.
X. Xu, Gullans, M., and Taylor, J. M., Quantum Nonlinear Optics Near Optomechanical Instabilities, Physical Review A, vol. 91, no. 1, p. 013818, 2015.
S. Xu, Li, X., Hsu, Y. - T., Swingle, B., and Sarma, S. Das, Butterfly effect in interacting Aubry-Andre model: thermalization, slow scrambling, and many-body localization, 2019.
S. Xu and Swingle, B., Locality, Quantum Fluctuations, and Scrambling, 2018.
X. Xu, Purdy, T., and Taylor, J. M., Cooling a harmonic oscillator by optomechanical modification of its bath, Physical Review Letters, vol. 118, p. 223602, 2017.
X. Xu, Kim, S., Bahl, G., and Taylor, J. M., A quasi-mode theory of chiral phonons, 2016.
T. Xin, Lu, D., Klassen, J., Yu, N., Ji, Z., Chen, J., Ma, X., Long, G., Zeng, B., and Laflamme, R., Quantum state tomography via reduced density matrices, Physical Review Letters, vol. 118, p. 020401, 2017.
W
X. Wu and Chen, J., Multiparty quantum data hiding with enhanced security and remote deletion, p. 5, 2018.
X. Wu, Yao, P., and Yuen, H., Raz-McKenzie simulation with the inner product gadget, Electronic Colloquium on Computational Complexity (ECCC), 2017.
J. P. Wrubel, Schwettmann, A., Fahey, D. P., Glassman, Z., Pechkis, H. K., Griffin, P. F., Barnett, R., Tiesinga, E., and Lett, P. D., A spinor Bose-Einstein condensate phase-sensitive amplifier for SU(1,1) interferometry, Phys. Rev, vol. A 98, no. 023620, 2018.
J. D. Wong-Campos, Johnson, K. G., Neyenhuis, B., Mizrahi, J., and Monroe, C., High resolution adaptive imaging of a single atom, Nature Photonics, no. 10, pp. 606-610, 2016.
P. M. Wocjan, Jordan, S. P., Ahmadi, H., and Brennan, J. P., Efficient quantum processing of ideals in finite rings, 2009.
F. Witteveen, Scholz, V., Swingle, B., and Walter, M., Quantum circuit approximations and entanglement renormalization for the Dirac field in 1+1 dimensions, 2019.
R. M. Wilson, Mahmud, K. W., Hu, A., Gorshkov, A. V., Hafezi, M., and Foss-Feig, M., Collective phases of strongly interacting cavity photons, Physical Review A, vol. 94, no. 3, p. 033801, 2016.
S. Whitsitt, Samajdar, R., and Sachdev, S., Quantum field theory for the chiral clock transition in one spatial dimension, Phys. Rev. , vol. B , no. 98, p. 205118 , 2018.
G. Wang, Quantum Algorithms for Curve Fitting, 2014.
G. Wang, Efficient quantum algorithms for analyzing large sparse electrical networks, Quantum Information & Computation, vol. 17, no. 11&12, pp. 987-1026, 2017.
X. Wang and Wilde, M. M., Exact entanglement cost of quantum states and channels under PPT-preserving operations, 2018.
C. - H. Wang and Taylor, J. M., A Quantum Model for an Entropic Spring, Physical Review B, vol. 93, no. 21, p. 214102, 2016.
X. Wang and Wilde, M. M., Resource theory of asymmetric distinguishability for quantum channels, 2019.
G. Wang, Quantum Algorithm for Linear Regression, Physical Review A, vol. 96, p. 012335, 2017.
D. Wang, Simulating quantum circuits by classical circuits, 2019.