Publications

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K. R. A. Hazzard, Manmana, S. R., Foss-Feig, M., and Rey, A. Maria, Far from equilibrium quantum magnetism with ultracold polar molecules, Physical Review Letters, vol. 110, no. 7, 2013.
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.
C. A. Hass, Genz, F., Kustusch, M. Bridget, Ouime, P. - P. A., Pomian, K., Sayre, E. C., and Zwolak, J. P., Studying community development: a network analytical approach, 2018.
A. W. Harrow, Natarajan, A., and Wu, X., Limitations of semidefinite programs for separable states and entangled games, Commun. Math. Phys., vol. 366, no. 2, 2019.
A. W. Harrow, Lin, C. Yen- Yu, and Montanaro, A., Sequential measurements, disturbance and property testing, Proceedings of ​the 28th Annual ACM-SIAM Symposium on Discrete Algorithms (SODA). pp. 1598-1611, 2017.
T. M. Hanna, Tiesinga, E., and Julienne, P. S., Creation and manipulation of Feshbach resonances with radio-frequency radiation , New Journal of Physics, vol. 12, no. 8, p. 083031, 2010.
T. M. Hanna, Tiesinga, E., and Julienne, P. S., Prediction of Feshbach resonances from three input parameters, Physical Review A, vol. 79, no. 4, 2009.
T. M. Hanna, Tiesinga, E., Mitchell, W. F., and Julienne, P. S., Resonant control of polar molecules in an optical lattice, Physical Review A, vol. 85, no. 2, 2012.
D. Hangleiter and Gullans, M., Bell Sampling from Quantum Circuits, Physical Review Letters, vol. 133, 2024.
D. Hangleiter, Carolan, J., and Thébault, K. P. Y., Analogue Quantum Simulation: A New Instrument for Scientific Understanding. Springer Nature, 2022, pp. 83-102.
D. Hangleiter and Eisert, J., Computational advantage of quantum random sampling, 2022.
D. Hangleiter, Roth, I., Eisert, J., and Roushan, P., Precise Hamiltonian identification of a superconducting quantum processor, 2021.
H. Halvorson and Bub, J., Can quantum cryptography imply quantum mechanics? Reply to Smolin, 2003.
N. Yunger Halpern, Kothakonda, N. B. T., Haferkamp, J., Munson, A., Eisert, J., and Faist, P., Resource theory of quantum uncomplexity, Physical Review A, vol. 106, 2022.
N. Yunger Halpern, Kothakonda, N. B. T., Haferkamp, J., Munson, A., Eisert, J., and Faist, P., Resource theory of quantum uncomplexity, 2021.
N. Yunger Halpern, Beverland, M. E., and Kalev, A., Equilibration to the non-Abelian thermal state in quantum many-body physics, 2019.
N. Yunger Halpern, Beverland, M. E., and Kalev, A., Noncommuting conserved charges in quantum many-body thermalization, Phys. Rev. E , vol. 101, no. 042117, 2020.
N. Yunger Halpern, Swingle, B., and Dressel, J., The quasiprobability behind the out-of-time-ordered correlator, Phys. Rev. , vol. A, no. 97, 2018.
N. Yunger Halpern and Majidy, S., How to build Hamiltonians that transport noncommuting charges in quantum thermodynamics, npj Quantum Inf, vol. 8, no. 10, 2022.
M. Hafezi, Adhikari, P., and Taylor, J. M., A chemical potential for light, Physical Review B, vol. 92, no. 17, p. 174305, 2015.
J. Haferkamp, Faist, P., Kothakonda, N. B. T., Eisert, J., and Halpern, N. Yunger, Linear growth of quantum circuit complexity, Nat. Phys., 2022.