Publications

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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.
G. K. Brennen, O'Leary, D. P., and Bullock, S. S., Criteria for Exact Qudit Universality, Physical Review A, vol. 71, no. 5, 2005.
J. Bringewatt, Ehrenberg, A., Goel, T., and Gorshkov, A. V., Optimal function estimation with photonic quantum sensor networks, Physical Review Research, vol. 6, 2024.
J. Bringewatt, Boettcher, I., Niroula, P., Bienias, P., and Gorshkov, A. V., Protocols for estimating multiple functions with quantum sensor networks: Geometry and performance, Physical Review Research, vol. 3, 2021.
J. Bringewatt, Jarret, M., and Mooney, T. C., On the stability of solutions to Schrödinger's equation short of the adiabatic limit, 2023.
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, Sato, N., Melnitchouk, W., Qiu, J. - W., Steffens, F., and Constantinou, M., Confronting lattice parton distributions with global QCD analysis, 2020.
J. Bringewatt, Kunjummen, J., and Mueller, N., Randomized measurement protocols for lattice gauge theories, Quantum, vol. 8, p. 1300, 2024.
J. Bringewatt and Brady, L. T., Simultaneous Stoquasticity, Phys. Rev. A, vol. 105, no. 062601, 2022.
J. Bringewatt and Davoudi, Z., Parallelization techniques for quantum simulation of fermionic systems, 2023.
J. Bringewatt, Dorland, W., and Jordan, S. P., Polynomial Time Algorithms for Estimating Spectra of Adiabatic Hamiltonians, Phys. Rev. A, vol. 100, no. 032336, 2019.
J. Bringewatt and Jarret, M., Effective gaps are not effective: quasipolynomial classical simulation of obstructed stoquastic Hamiltonians, 2020.
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.
K. R. Brown, Kim, J., and Monroe, C., Co-Designing a Scalable Quantum Computer with Trapped Atomic Ions, 2016.
A. R. Brown, Gharibyan, H., Leichenauer, S., Lin, H. W., Nezami, S., Salton, G., Susskind, L., Swingle, B., and Walter, M., Quantum Gravity in the Lab: Teleportation by Size and Traversable Wormholes, 2019.
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.
J. Bub, Quantum computation from a quantum logical perspective, 2006.
J. Bub and Pitowsky, I., Two dogmas about quantum mechanics, 2007.
J. Bub and Bub, T., Totally random: why nobody understands quantum mechanics (a serious comic on entanglement). Princeton University Press, 2018.
J. Bub, The Measurement Problem from the Perspective of an Information Theoretic Interpretation of Quantum Mechanics, Entropy, vol. 17, no. 11, pp. 7374-7386, 2015.
J. Bub, The quantum bit commitment theorem, 2000.
J. Bub, Bananaworld: Quantum Mechanics for Primates. Oxford University Press, 2016.
J. Bub, Clifton, R., and Goldstein, S., Revised Proof of the Uniqueness Theorem for 'No Collapse' Interpretations of Quantum Mechanics , 1999.
J. Bub, Quantum information and computation, 2005.