Publications

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A
P. Alsing, Battle, P., Bienfang, J. C., Borders, T., Brower-Thomas, T., Carr, L. D., Chong, F., Dadras, S., DeMarco, B., Deutsch, I., Figueroa, E., Freedman, D., Everitt, H., Gauthier, D., Johnston-Halperin, E., Kim, J., Kira, M., Kumar, P., Kwiat, P., Lekki, J., Loiacono, A., Lončar, M., Lowell, J. R., Lukin, M., Merzbacher, C., Miller, A., Monroe, C., Pollanen, J., Pappas, D., Raymer, M., Reano, R., Rodenburg, B., Savage, M., Searles, T., and Ye, J., Accelerating Progress Towards Practical Quantum Advantage: The Quantum Technology Demonstration Project Roadmap, 2023.
P. Alsing, Battle, P., Bienfang, J. C., Borders, T., Brower-Thomas, T., Carr, L. D., Chong, F., Dadras, S., DeMarco, B., Deutsch, I., Figueroa, E., Freedman, D., Everitt, H., Gauthier, D., Johnston-Halperin, E., Kim, J., Kira, M., Kumar, P., Kwiat, P., Lekki, J., Loiacono, A., Lončar, M., Lowell, J. R., Lukin, M., Merzbacher, C., Miller, A., Monroe, C., Pollanen, J., Pappas, D., Raymer, M., Reano, R., Rodenburg, B., Savage, M., Searles, T., and Ye, J., Accelerating Progress Towards Practical Quantum Advantage: The Quantum Technology Demonstration Project Roadmap, 2023.
P. Alsing, Battle, P., Bienfang, J. C., Borders, T., Brower-Thomas, T., Carr, L. D., Chong, F., Dadras, S., DeMarco, B., Deutsch, I., Figueroa, E., Freedman, D., Everitt, H., Gauthier, D., Johnston-Halperin, E., Kim, J., Kira, M., Kumar, P., Kwiat, P., Lekki, J., Loiacono, A., Lončar, M., Lowell, J. R., Lukin, M., Merzbacher, C., Miller, A., Monroe, C., Pollanen, J., Pappas, D., Raymer, M., Reano, R., Rodenburg, B., Savage, M., Searles, T., and Ye, J., Accelerating Progress Towards Practical Quantum Advantage: The Quantum Technology Demonstration Project Roadmap, 2023.
F. Setiawan, Gramolin, A. V., Matekole, E. S., Krovi, H., and Taylor, J. M., Accurate and Honest Approximation of Correlated Qubit Noise, 2023.
D. Maslov, On the advantages of using relative phase Toffolis with an application to multiple control Toffoli optimization, Physical Review A, vol. 93, no. 2, p. 022311, 2016.
X. Song, Salvati, F., Gaikwad, C., Halpern, N. Yunger, Arvidsson-Shukur, D. R. M., and Murch, K., Agnostic Phase Estimation, 2024.
Y. Nam, Su, Y., and Maslov, D., Approximate Quantum Fourier Transform with O(nlog(n)) T gates, npj Quantum Information , vol. 6, no. 26, 2020.
Y. Kharkov, Ivanova, A., Mikhantiev, E., and Kotelnikov, A., Arline Benchmarks: Automated Benchmarking Platform for Quantum Compilers, 2022.
Y. Nam, Ross, N. J., Su, Y., Childs, A. M., and Maslov, D., Automated optimization of large quantum circuits with continuous parameters, npj:Quantum Information, vol. 4, no. 23, 2018.
J. P. Zwolak, McJunkin, T., Kalantre, S. S., Dodson, J. P., MacQuarrie, E. R., Savage, D. E., Lagally, M. G., Coppersmith, S. N., Eriksson, M. A., and Taylor, J. M., Auto-tuning of double dot devices in situ with machine learning, Phys. Rev. Applied , vol. 13, no. 034075 , 2020.
J. P. Zwolak, McJunkin, T., Kalantre, S. S., Dodson, J. P., MacQuarrie, E. R., Savage, D. E., Lagally, M. G., Coppersmith, S. N., Eriksson, M. A., and Taylor, J. M., Auto-tuning of double dot devices in situ with machine learning, Phys. Rev. Applied , vol. 13, no. 034075 , 2020.
C
G. Alagic, Gagliardoni, T., and Majenz, C., Can you sign a quantum state?, v4: version for publication in Quantum, v5: CC license, 2021.
M. F. Maghrebi, Rahi, S. Jamal, Emig, T., Graham, N., Jaffe, R. L., and Kardar, M., Casimir force between sharp-shaped conductors, Proceedings of the National Academy of Sciences, vol. 108, no. 17, pp. 6867 - 6871, 2011.
M. F. Maghrebi, Gong, Z. - X., Foss-Feig, M., and Gorshkov, A. V., Causality and quantum criticality in long-range lattice models, Physical Review B, vol. 93, p. 125128, 2016.
M. F. Maghrebi, Gong, Z. - X., Foss-Feig, M., and Gorshkov, A. V., Causality and quantum criticality with long-range interactions, Physical Review B, vol. 92, no. 12, p. 125128, 2016.
K. Sosnova, Carter, A., and Monroe, C., The Character of Motional Modes for Entanglement and Sympathetic Cooling of Mixed-Species Trapped Ion Chains, 2020.
A. M. Childs, Leung, D., Mancinska, L., and Ozols, M., Characterization of universal two-qubit Hamiltonians, 2010.
B. Cao, Grass, T., Gazzano, O., Patel, K. Ashokbhai, Hu, J., Müller, M., Huber, T., Anzi, L., Watanabe, K., Taniguchi, T., Newell, D., Gullans, M., Sordan, R., Hafezi, M., and Solomon, G., Chiral transport of hot carriers in graphene in the quantum Hall regime, 2021.
D. Kafri, Taylor, J. M., and Milburn, G. J., A classical channel model for gravitational decoherence, New Journal of Physics, vol. 16, no. 6, p. 065020, 2014.
M. Barkeshli, Chen, Y. - A., Hsin, P. - S., and Manjunath, N., Classification of (2+1)D invertible fermionic topological phases with symmetry, Phys. Rev. B, vol. 105, no. 235143, 2022.
D. Wu, Zhao, Q., Wang, C., Huang, L., Jiang, Y. - F., Bai, B., Zhou, Y., Gu, X. - M., Liu, F. - M., Mao, Y. - Q., Sun, Q. - C., Chen, M. - C., Zhang, J., Peng, C. - Z., Zhu, X. - B., Zhang, Q., Lu, C. - Y., and Pan, J. - W., Closing the Locality and Detection Loopholes in Multiparticle Entanglement Self-Testing, Physical Review Letters, vol. 128, no. 25, p. 250401, 2022.