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Y. Alexeev, Bacon, D., Brown, K. R., Calderbank, R., Carr, L. D., Chong, F. T., DeMarco, B., Englund, D., Farhi, E., Fefferman, B., Gorshkov, A. V., Houck, A., Kim, J., Kimmel, S., Lange, M., Lloyd, S., Lukin, M. D., Maslov, D., Maunz, P., Monroe, C., Preskill, J., Roetteler, M., Savage, M., Thompson, J., and Vazirani, U., Quantum Computer Systems for Scientific Discovery, 2019.
P. S. Emani, Warrell, J., Anticevic, A., Bekiranov, S., Gandal, M., McConnell, M. J., Sapiro, G., Aspuru-Guzik, A., Baker, J., Bastiani, M., McClure, P., Murray, J., Sotiropoulos, S. N., Taylor, J. M., Senthil, G., Lehner, T., Gerstein, M. B., and Harrow, A. W., Quantum Computing at the Frontiers of Biological Sciences, 2019.
K. R. A. Hazzard, van den Worm, M., Foss-Feig, M., Manmana, S. R., Torre, E. Dalla, Pfau, T., Kastner, M., and Rey, A. Maria, Quantum correlations and entanglement in far-from-equilibrium spin systems , Physical Review A, vol. 90, no. 6, 2014.
J. Leng, Hickman, E., Li, J., and Wu, X., Quantum Hamiltonian Descent, 2023.
J. C. Bienfang, Gross, A. J., Mink, A., Hershman, B. J., Nakassis, A., Tang, X., Lu, R., Su, D. H., Clark, C. W., Williams, C. J., Hagley, E. W., and Wen, J., Quantum key distribution with 1.25 Gbps clock synchronization, Optics Express, vol. 12, no. 9, p. 2011, 2004.
J. C. Bienfang, Gross, A. J., Mink, A., Hershman, B. J., Nakassis, A., Tang, X., Lu, R., Su, D. H., Clark, C. W., Williams, C. J., Hagley, E. W., and Wen, J., Quantum key distribution with 1.25 Gbps clock synchronization, Optics Express, vol. 12, no. 9, p. 2011, 2004.
H. Gharibyan, Hanada, M., Swingle, B., and Tezuka, M., Quantum Lyapunov Spectrum, JHEP04, vol. 082, 2019.
M. Pistoia, Ahmad, S. Farhan, Ajagekar, A., Buts, A., Chakrabarti, S., Herman, D., Hu, S., Jena, A., Minssen, P., Niroula, P., Rattew, A., Sun, Y., and Yalovetzky, R., Quantum Machine Learning for Finance, 2021.
M. Pistoia, Ahmad, S. Farhan, Ajagekar, A., Buts, A., Chakrabarti, S., Herman, D., Hu, S., Jena, A., Minssen, P., Niroula, P., Rattew, A., Sun, Y., and Yalovetzky, R., Quantum Machine Learning for Finance, 2021.
J. S. Douglas, Habibian, H., Hung, C. - L., Gorshkov, A. V., Kimble, H. J., and Chang, D. E., Quantum many-body models with cold atoms coupled to photonic crystals, Nature Photonics, vol. 9, no. 5, pp. 326 - 331, 2015.
J. S. Douglas, Habibian, H., Hung, C. - L., Gorshkov, A. V., Kimble, H. J., and Chang, D. E., Quantum many-body models with cold atoms coupled to photonic crystals, Nature Photonics, vol. 9, no. 5, pp. 326 - 331, 2015.
O. Firstenberg, Lukin, M. D., Peyronel, T., Liang, Q. - Y., Vuletic, V., Gorshkov, A. V., Hofferberth, S., and Pohl, T., Quantum Nonlinear Optics: Strongly Interacting Photons, Opt. Photonics News, vol. 24, p. 48, 2013.
T. Peyronel, Firstenberg, O., Liang, Q. - Y., Hofferberth, S., Gorshkov, A. V., Pohl, T., Lukin, M. D., and Vuletic, V., Quantum nonlinear optics with single photons enabled by strongly interacting atoms, Nature (London), vol. 488, p. 57, 2012.
C. L. Holloway, Simons, M. T., Haddab, A. H., Williams, C. J., and Holloway, M. W., Quantum Physics Meets Music: A "Real-Time" Guitar Recording Using Rydberg-Atoms and Electromagnetically Induced Transparency, 2019.
C. L. Holloway, Simons, M. T., Haddab, A. H., Williams, C. J., and Holloway, M. W., Quantum Physics Meets Music: A "Real-Time" Guitar Recording Using Rydberg-Atoms and Electromagnetically Induced Transparency, 2019.
C. L. Holloway, Simons, M. T., Haddab, A. H., Williams, C. J., and Holloway, M. W., Quantum Physics Meets Music: A "Real-Time" Guitar Recording Using Rydberg-Atoms and Electromagnetically Induced Transparency, 2019.
A. M. Childs, Hung, S. - H., and Li, T., Quantum Query Complexity with Matrix-Vector Products, 48th International Colloquium on Automata, Languages, and Programming (ICALP 2021), 2021.
A. M. Childs, Hung, S. - H., and Li, T., Quantum query complexity with matrix-vector products, Proceedings of the 48th International Colloquium on Automata, Languages, and Programming (ICALP 2021), Leibniz International Proceedings in Informatics, vol. 198, pp. 55:1-55:19, 2021.
C. W. Bauer, Davoudi, Z., A. Balantekin, B., Bhattacharya, T., Carena, M., de Jong, W. A., Draper, P., El-Khadra, A., Gemelke, N., Hanada, M., Kharzeev, D., Lamm, H., Li, Y. - Y., Liu, J., Lukin, M., Meurice, Y., Monroe, C., Nachman, B., Pagano, G., Preskill, J., Rinaldi, E., Roggero, A., Santiago, D. I., Savage, M. J., Siddiqi, I., Siopsis, G., Van Zanten, D., Wiebe, N., Yamauchi, Y., Yeter-Aydeniz, K., and Zorzetti, S., Quantum Simulation for High Energy Physics, 2022.
D. R. M. Arvidsson-Shukur, McConnell, A. G., and Halpern, N. Yunger, Quantum simulations of time travel can power nonclassical metrology, Phys. Rev. Lett., vol. 131, no. 150202, 2023.
E. Altman, Brown, K. R., Carleo, G., Carr, L. D., Demler, E., Chin, C., DeMarco, B., Economou, S. E., Eriksson, M. A., Fu, K. - M. C., Greiner, M., Hazzard, K. R. A., Hulet, R. G., Kollár, A. J., Lev, B. L., Lukin, M. D., Ma, R., Mi, X., Misra, S., Monroe, C., Murch, K., Nazario, Z., Ni, K. - K., Potter, A. C., and Roushan, P., Quantum Simulators: Architectures and Opportunities, 2019.
E. Altman, Brown, K. R., Carleo, G., Carr, L. D., Demler, E., Chin, C., DeMarco, B., Economou, S. E., Eriksson, M. A., Fu, K. - M. C., Greiner, M., Hazzard, K. R. A., Hulet, R. G., Kollár, A. J., Lev, B. L., Lukin, M. D., Ma, R., Mi, X., Misra, S., Monroe, C., Murch, K., Nazario, Z., Ni, K. - K., Potter, A. C., and Roushan, P., Quantum Simulators: Architectures and Opportunities, 2019.
M. - C. Hsu, Kuo, E. - J., Yu, W. - H., Cai, J. - F., and Hsieh, M. - H., Quantum state tomography via non-convex Riemannian gradient descent, 2022.
M. - C. Hsu, Kuo, E. - J., Yu, W. - H., Cai, J. - F., and Hsieh, M. - H., Quantum state tomography via non-convex Riemannian gradient descent, 2022.
Z. Davoudi, Jarzynski, C., Mueller, N., Oruganti, G., Powers, C., and Halpern, N. Yunger, Quantum thermodynamics of nonequilibrium processes in lattice gauge theories, 2024.