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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.
C. - L. Hong, Tsai, T., Chou, J. - P., Chen, P. - J., Tsai, P. - K., Chen, Y. - C., Kuo, E. - J., Srolovitz, D., Hu, A., Cheng, Y. - C., and Goan, H. - S., Accurate and Efficient Quantum Computations of Molecular Properties Using Daubechies Wavelet Molecular Orbitals: A Benchmark Study against Experimental Data, PRX Quantum, vol. 3, p. 020360, 2022.
C. - L. Hong, Tsai, T., Chou, J. - P., Chen, P. - J., Tsai, P. - K., Chen, Y. - C., Kuo, E. - J., Srolovitz, D., Hu, A., Cheng, Y. - C., and Goan, H. - S., Accurate and Efficient Quantum Computations of Molecular Properties Using Daubechies Wavelet Molecular Orbitals: A Benchmark Study against Experimental Data, PRX Quantum, vol. 3, p. 020360, 2022.
C. - L. Hong, Tsai, T., Chou, J. - P., Chen, P. - J., Tsai, P. - K., Chen, Y. - C., Kuo, E. - J., Srolovitz, D., Hu, A., Cheng, Y. - C., and Goan, H. - S., Accurate and Efficient Quantum Computations of Molecular Properties Using Daubechies Wavelet Molecular Orbitals: A Benchmark Study against Experimental Data, PRX Quantum, vol. 3, p. 020360, 2022.
C. - L. Hong, Tsai, T., Chou, J. - P., Chen, P. - J., Tsai, P. - K., Chen, Y. - C., Kuo, E. - J., Srolovitz, D., Hu, A., Cheng, Y. - C., and Goan, H. - S., Accurate and Efficient Quantum Computations of Molecular Properties Using Daubechies Wavelet Molecular Orbitals: A Benchmark Study against Experimental Data, PRX Quantum, vol. 3, p. 020360, 2022.
A. Bapat, Childs, A. M., Gorshkov, A. V., and Schoute, E., Advantages and limitations of quantum routing, PRX Quantum, vol. 4, no. 010313, 2023.
J. C. Bienfang, Clark, C. W., Williams, C. J., Hagley, E. W., and Wen, J., Advantages of high-speed technique for quantum key distribution; reply to quant-ph/0407050 , 2004.
W. Chen, Beck, K. M., Bücker, R., Gullans, M., Lukin, M. D., Tanji-Suzuki, H., and Vuletic, V., All-Optical Switch and Transistor Gated by One Stored Photon, Science, vol. 341, no. 6147, pp. 768 - 770, 2013.
D. Hangleiter, Carolan, J., and Thébault, K. P. Y., Analogue Quantum Simulation: A New Instrument for Scientific Understanding. Springer Nature, 2022, pp. 83-102.
X. You, Chakrabarti, S., Chen, B., and Wu, X., Analyzing Convergence in Quantum Neural Networks: Deviations from Neural Tangent Kernels, 2023.
X. You, Chakrabarti, S., Chen, B., and Wu, X., Analyzing Convergence in Quantum Neural Networks: Deviations from Neural Tangent Kernels, 2023.
J. Chen and Ying, M., Ancilla-Assisted Discrimination of Quantum Gates, 2008.
C. J. Cao and Lackey, B., Approximate Bacon-Shor Code and Holography, Journal of High Energy Physics, vol. 2021, 2021.
S. Dontha, Tan, S. Jie Samuel, Smith, S., Choi, S., and Coudron, M., Approximating Output Probabilities of Shallow Quantum Circuits which are Geometrically-local in any Fixed Dimension, Leibniz International Proceedings in Informatics (LIPIcs), vol. 232, p. 9:1--9:17, 2022.
S. Dontha, Tan, S. Jie Samuel, Smith, S., Choi, S., and Coudron, M., Approximating Output Probabilities of Shallow Quantum Circuits which are Geometrically-local in any Fixed Dimension, Leibniz International Proceedings in Informatics (LIPIcs), vol. 232, p. 9:1--9:17, 2022.
A. M. Childs, Leung, D. W., Verstraete, F., and Vidal, G., Asymptotic entanglement capacity of the Ising and anisotropic Heisenberg interactions , 2002.
J. S. Douglas, Habibian, H., Gorshkov, A. V., Kimble, H. J., and Chang, D. E., Atom induced cavities and tunable long-range interactions between atoms trapped near photonic crystals, Nature Photon. 9, 326 (2015), 2015.
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.