Publications

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R. Agarwal, Rethinasamy, S., Sharma, K., and Wilde, M. M., Estimating distinguishability measures on quantum computers, 2021.
T. Sewell, Bapat, A., and Jordan, S., Estimating gate complexities for the site-by-site preparation of fermionic vacua, 2022.
S. P. Jordan and Wocjan, P., Estimating Jones and HOMFLY polynomials with One Clean Qubit, Quantum Information and Computation, vol. 9, no. 3, pp. 264-289, 2009.
P. W. Shor and Jordan, S. P., Estimating Jones polynomials is a complete problem for one clean qubit, Quantum Information & Computation, vol. 8, no. 8, pp. 681-714, 2008.
L. Pedro García-Pintos, Bharti, K., Bringewatt, J., Dehghani, H., Ehrenberg, A., Halpern, N. Yunger, and Gorshkov, A. V., Estimation of Hamiltonian parameters from thermal states, 2024.
J. Yu, Chen, Y. - A., and Sarma, S. Das, Euler-obstructed Cooper pairing: Nodal superconductivity and hinge Majorana zero modes, Physical Review B, vol. 105, 2022.
C. Miller, An Euler–Poincaré bound for equicharacteristic étale sheaves, Algebra & Number Theory, vol. 4, no. 1, pp. 21 - 45, 2010.
K. A. Jackson, Miller, C., and Wang, D., Evaluating the Security of CRYSTALS-Dilithium in the Quantum Random Oracle Model, in Advances in Cryptology – EUROCRYPT 2024, Cham, 2024.
C. Miller, Evasiveness of Graph Properties and Topological Fixed-Point Theorems, Foundations and Trends in Theoretical Computer Science, vol. 7, pp. 337-415, 2013.
Q. Wang, Cian, Z. - P., Li, M., Markov, I. L., and Nam, Y., Ever more optimized simulations of fermionic systems on a quantum computer, 2023.
A. M. Childs, Reichardt, B. W., Spalek, R., and Zhang, S., Every NAND formula of size N can be evaluated in time N^1/2+o(1) on a quantum computer , 2007.
X. Wang and Wilde, M. M., Exact entanglement cost of quantum states and channels under PPT-preserving operations, 2018.
A. M. Childs, Patterson, R. B., and MacKay, D. J. C., Exact sampling from non-attractive distributions using summary states, Physical Review E, vol. 63, no. 3, 2001.
B. Fefferman, Foss-Feig, M., and Gorshkov, A. V., Exact sampling hardness of Ising spin models, Physical Review A, vol. 96, no. 3, p. 032324, 2017.
S. Ganeshan, Gorshkov, A. V., Gurarie, V., and Galitski, V. M., Exactly soluble model of boundary degeneracy, Physical Review B, vol. 95, 2017.
Y. - A. Chen and Hsin, P. - S., Exactly Solvable Lattice Hamiltonians and Gravitational Anomalies, 2021.
A. M. Childs, Farhi, E., and Gutmann, S., An example of the difference between quantum and classical random walks, Quantum Information Processing, vol. 1, no. 1/2, pp. 35 - 43, 2001.
J. Chen, Duan, R., Ji, Z., Ying, M., and Yu, J., Existence of Universal Entangler, Journal of Mathematical Physics, vol. 49, no. 1, p. 012103, 2008.
P. Bienias, Gullans, M., Kalinowski, M., Craddock, A. N., Ornelas-Huerta, D. P., Rolston, S. L., Porto, J. V., and Gorshkov, A. V., Exotic photonic molecules via Lennard-Jones-like potentials, Phys. Rev. Lett., vol. 125, no. 093601, 2020.
J. Leng, Li, J., Peng, Y., and Wu, X., Expanding Hardware-Efficiently Manipulable Hilbert Space via Hamiltonian Embedding, 2024.
K. Hietala, Li, L., Gaur, A., Green, A., Rand, R., Wu, X., and Hicks, M., Expanding the VOQC Toolkit, in The Second International Workshop on Programming Languages for Quantum Computing (PLanQC 2021), 2021.
N. M. Linke, Maslov, D., Roetteler, M., Debnath, S., Figgatt, C., Landsman, K. A., Wright, K., and Monroe, C., Experimental Comparison of Two Quantum Computing Architectures, Proceedings of the National Academy of Sciences, vol. 114. pp. 3305-3310, 2017.
K. Rudinger, Kimmel, S., Lobser, D., and Maunz, P., Experimental demonstration of cheap and accurate phase estimation, Physical Review Letters, vol. 118, no. 19, p. 190502, 2017.
N. M. Linke, Gutierrez, M., Landsman, K. A., Figgatt, C., Debnath, S., Brown, K. R., and Monroe, C., Experimental demonstration of quantum fault tolerance, 2016.
L. Lewis, Zhu, D., Gheorghiu, A., Noel, C., Katz, O., Harraz, B., Wang, Q., Risinger, A., Feng, L., Biswas, D., Egan, L., Vidick, T., Cetina, M., and Monroe, C., Experimental Implementation of an Efficient Test of Quantumness, 2022.