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J. Antonio Ma Guzmán, Erker, P., Gasparinetti, S., Huber, M., and Halpern, N. Yunger, DiVincenzo-like criteria for autonomous quantum machines, 2023.
N. Gupta, Katz, J., and Chopra, N., Information-Theoretic Privacy For Distributed Average Consensus: Bounded Integral Inputs, 2018.
N. Gupta, Katz, J., and Chopra, N., Statistical Privacy in Distributed Average Consensus on Bounded Real Inputs, 2019.
N. Gupta, Katz, J., and Chopra, N., Information-Theoretic Privacy in Distributed Average Consensus, 2018.
A. Y. Guo, Lieu, S., Tran, M. C., and Gorshkov, A. V., Clustering of steady-state correlations in open systems with long-range interactions, 2021.
S. Guo, Wang, Y., Purdy, T., and Taylor, J. M., Beyond Spontaneous Emission: Giant Atom Bounded in Continuum, 2019.
S. Guo, Fritsch, A. R., Greenberg, C., Spielman, I. B., and Zwolak, J. P., Machine-learning enhanced dark soliton detection in Bose-Einstein condensates, Mach. Learn.: Sci. Technol. , vol. 2, p. 035020, 2021.
A. Y. Guo, Young, J. T., Belyansky, R., Bienias, P., and Gorshkov, A. V., Experimental roadmap for optimal state transfer and entanglement generation in power-law systems, 2024.
A. Y. Guo, Deshpande, A., Chu, S. - K., Eldredge, Z., Bienias, P., Devulapalli, D., Su, Y., Childs, A. M., and Gorshkov, A. V., Implementing a Fast Unbounded Quantum Fanout Gate Using Power-Law Interactions, Phys. Rev. Research, vol. 4, no. L042016, 2022.
S. Guo, Koh, S. M., Fritsch, A. R., Spielman, I. B., and Zwolak, J. P., Combining machine learning with physics: A framework for tracking and sorting multiple dark solitons, Phys. Rev. Research, vol. 4, p. 023163 , 2022.
A. Y. Guo, Tran, M. C., Childs, A. M., Gorshkov, A. V., and Gong, Z. - X., Signaling and Scrambling with Strongly Long-Range Interactions, Physical Review A, vol. 102, no. 010401(R), 2020.
M. Gullans and Petta, J. R., Coherent transport of spin by adiabatic passage in quantum dot arrays, Phys. Rev. B, vol. 102, no. 155404, 2020.
M. Gullans and Taylor, J. M., A Quantum Network of Silicon Qubits using Mid-Infrared Graphene Plasmons, 2014.
M. Gullans and Petta, J. R., Coherent transport of spin by adiabatic passage in quantum dot arrays, Physical Review B, vol. 102, no. 15, 2020.
M. Gullans, Krastanov, S., Huse, D. A., Jiang, L., and Flammia, S. T., Quantum coding with low-depth random circuits, 2020.
M. Gullans, Liu, Y. - Y., Stehlik, J., Petta, J. R., and Taylor, J. M., Phonon-Assisted Gain in a Semiconductor Double Quantum Dot Maser, Physical Review Letters, vol. 114, no. 19, p. 196802, 2015.
M. Gullans, Caranti, M., Mills, A. R., and Petta, J. R., Compressed gate characterization for quantum devices with time-correlated noise, 2023.
M. Gullans, Stehlik, J., Liu, Y. - Y., Petta, J. R., and Taylor, J. M., Sisyphus Thermalization of Photons in a Cavity-Coupled Double Quantum Dot, Physical Review Letters, vol. 117, no. 5, p. 056801, 2016.
M. Gullans and Huse, D. A., Dynamical Purification Phase Transition Induced by Quantum Measurements, Physical Review X, vol. 10, no. 4, 2020.
M. Gullans, Chang, D. E., Koppens, F. H. L., de Abajo, F. J. García, and Lukin, M. D., Single-photon nonlinear optics with graphene plasmons, Physical Review Letters, vol. 111, no. 24, 2013.
M. Gullans and Taylor, J. M., Optical Control of Donor Spin Qubits in Silicon, Physical Review B, vol. 92, no. 19, p. 195411, 2015.
M. Gullans, Diehl, S., Rittenhouse, S. T., Ruzic, B. P., D'Incao, J. P., Julienne, P., Gorshkov, A. V., and Taylor, J. M., Efimov States of Strongly Interacting Photons, Physical Review Letters, vol. 119, no. 23, p. 233601, 2017.
M. Gullans, Taylor, J. M., and Petta, J. R., Probing electron-phonon interactions in the charge-photon dynamics of cavity-coupled double quantum dots, Physical Review B, vol. 97, no. 3, p. 035305, 2018.
M. Gullans, Tiecke, T., Chang, D. E., Feist, J., Thompson, J. D., Cirac, J. I., Zoller, P., and Lukin, M. D., Nanoplasmonic Lattices for Ultracold atoms, Physical Review Letters, vol. 109, no. 23, 2012.
M. Gullans, Thompson, J. D., Wang, Y., Liang, Q. - Y., Vuletic, V., Lukin, M. D., and Gorshkov, A. V., Effective Field Theory for Rydberg Polaritons, Physical Review Letters, vol. 117, no. 11, p. 113601, 2016.