Publications

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J. Bub, Secure key distribution via pre- and post-selected quantum states, Physical Review A, vol. 63, no. 3, 2001.
J. Bub, Von Neumann's 'No Hidden Variables' Proof: A Re-Appraisal, Foundations of Physics, vol. 40, no. 9-10, pp. 1333 - 1340, 2010.
J. Bub and Stairs, A., Quantum Interactions with Closed Timelike Curves and Superluminal Signaling , Physical Review A, vol. 89, no. 2, 2014.
J. Bub, Quantum mechanics is about quantum information, Foundations of Physics, vol. 35, no. 4, pp. 541 - 560, 2005.
J. Bub and Bub, T., Totally random: why nobody understands quantum mechanics (a serious comic on entanglement). Princeton University Press, 2018.
R. C. Brown, Wyllie, R., Koller, S. B., Goldschmidt, E. A., Foss-Feig, M., and Porto, J. V., 2D Superexchange mediated magnetization dynamics in an optical lattice, Science, vol. 348, no. 6234, pp. 540 - 544, 2015.
K. R. Brown, Kim, J., and Monroe, C., Co-Designing a Scalable Quantum Computer with Trapped Atomic Ions, 2016.
D. J. Brod and Childs, A. M., The computational power of matchgates and the XY interaction on arbitrary graphs, Quantum Information and Computation, vol. 14, no. 11-12, pp. 901-916, 2014.
J. Bringewatt, Dorland, W., Jordan, S. P., and Mink, A., Diffusion Monte Carlo Versus Adiabatic Computation for Local Hamiltonians, Physical Review A, vol. 97, no. 2, p. 022323, 2018.
J. Bringewatt, Dorland, W., and Jordan, S. P., Polynomial Time Algorithms for Estimating Spectra of Adiabatic Hamiltonians, 2019.
G. K. Brennen, O'Leary, D. P., and Bullock, S. S., Criteria for Exact Qudit Universality, Physical Review A, vol. 71, no. 5, 2005.
G. K. Brennen, Pupillo, G., Rey, A. Maria, Clark, C. W., and Williams, C. J., Scalable register initialization for quantum computing in an optical lattice , Journal of Physics B: Atomic, Molecular and Optical Physics, vol. 38, no. 11, pp. 1687 - 1694, 2005.
G. K. Brennen, Song, D., and Williams, C. J., A Quantum Computer Architecture using Nonlocal Interactions, Physical Review A, vol. 67, no. 5, 2003.
S. Breiner, Miller, C., and Ross, N. J., Graphical Methods in Device-Independent Quantum Cryptography, Quantum, vol. 3, no. 146, 2019.
S. Breiner, Kalev, A., and Miller, C., Parallel Self-Testing of the GHZ State with a Proof by Diagrams, EPTCS , vol. 287, pp. 43-66, 2019.
D. Braun, Hoffman, J., and Tiesinga, E., Superradiance of cold atoms coupled to a superconducting circuit, Physical Review A, vol. 83, no. 6, 2011.
J. B. Brask, Jiang, L., Gorshkov, A. V., Vuletic, V., Sorensen, A. S., and Lukin, M. D., Fast Entanglement Distribution with Atomic Ensembles and Fluorescent Detection , Physical Review A, vol. 81, no. 2, 2010.
F. G. S. L. Brandão, Kalev, A., Li, T., Lin, C. Yen- Yu, Svore, K. M., and Wu, X., Exponential Quantum Speed-ups for Semidefinite Programming with Applications to Quantum Learning, 2017.
F. G. S. L. Brandão, Kalev, A., Li, T., Lin, C. Yen- Yu, Svore, K. M., and Wu, X., Quantum SDP Solvers: Large Speed-ups, Optimality, and Applications to Quantum Learning, To appear at the 46th International Colloquium on Automata, Languages and Programming (ICALP 2019), 2018.
A. Bouland, Fefferman, B., Nirkhe, C., and Vazirani, U., Quantum Supremacy and the Complexity of Random Circuit Sampling, 2018.
C. Bouey, Graves, C., Ostrander, A., and Palma, G., Non-Recursively Constructible Recursive Families of Graphs, The Electronic Journal of Combinatorics, vol. 19, no. 2, 2012.
A. D. Bookatz, Jordan, S. P., Liu, Y. - K., and Wocjan, P., Testing quantum expanders is co-QMA-complete, Physical Review A, vol. 87, no. 4, 2013.
A. Blanc, Liu, Y. - K., and Vahda, A., Designing Incentives for Peer-to-Peer Routing, Proc. INFOCOM, pp. 374-385, 2005.
M. Bishof, Lin, Y., Swallows, M. D., Gorshkov, A. V., Ye, J., and Rey, A. Maria, Resolved atomic interaction sidebands in an optical clock transition, Physical Review Letters, vol. 106, no. 25, 2011.
P. Bierhorst, Knill, E., Glancy, S., Zhang, Y., Mink, A., Jordan, S., Rommal, A., Liu, Y. - K., Christensen, B., Nam, S. Woo, Stevens, M. J., and Shalm, L. K., Experimentally Generated Randomness Certified by the Impossibility of Superluminal Signals, Nature, vol. 556, pp. 223-226, 2018.