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Ultrafast light-induced long-range antiferromagnetic correlations in paramagnets
Amato, L., & Müller, M. (2024). Ultrafast light-induced long-range antiferromagnetic correlations in paramagnets. Physical Review B, 109(5), 054424 (11 pp.). https://doi.org/10.1103/PhysRevB.109.054424
Emergence of highly coherent two-level systems in a noisy and dense quantum network
Beckert, A., Grimm, M., Wili, N., Tschaggelar, R., Jeschke, G., Matmon, G., … Aeppli, G. (2024). Emergence of highly coherent two-level systems in a noisy and dense quantum network. Nature Physics, 20, 472-478. https://doi.org/10.1038/s41567-023-02321-y
Designing the stripe-ordered cuprate phase diagram through uniaxial-stress
Guguchia, Z., Das, D., Simutis, G., Adachi, T., Küspert, J., Kitajima, N., … Luetkens, H. (2024). Designing the stripe-ordered cuprate phase diagram through uniaxial-stress. Proceedings of the National Academy of Sciences of the United States of America PNAS, 121(1), e2303423120 (9 pp.). https://doi.org/10.1073/pnas.2303423120
Quantum glasses
Cugliandolo, L. F., & Müller, M. (2023). Quantum glasses. In P. Charbonneau, E. Marinari, M. Mézard, G. Parisi, F. Ricci-Tersenghi, G. Sicuro, & F. Zamponi (Eds.), Spin glass theory and far beyond​. Replica symmetry breaking after 40 years (pp. 353-374). https://doi.org/10.1142/9789811273926_0018
Twisted chiral superconductivity in photodoped frustrated Mott insulators
Li, J., Müller, M., Kim, A. J., Läuchli, A. M., & Werner, P. (2023). Twisted chiral superconductivity in photodoped frustrated Mott insulators. Physical Review B, 107(20), 205115 (15 pp.). https://doi.org/10.1103/PhysRevB.107.205115
Fractionalization paves the way to local projector embeddings of quantum many-body scars
Omiya, K., & Müller, M. (2023). Fractionalization paves the way to local projector embeddings of quantum many-body scars. Physical Review B, 108(5), 054412 (18 pp.). https://doi.org/10.1103/PhysRevB.108.054412
Quantum many-body scars in bipartite Rydberg arrays originating from hidden projector embedding
Omiya, K., & Müller, M. (2023). Quantum many-body scars in bipartite Rydberg arrays originating from hidden projector embedding. Physical Review A, 107(2), 023318 (20 pp.). https://doi.org/10.1103/PhysRevA.107.023318
Multiple mobile excitons manifested as sidebands in quasi-one-dimensional metallic TaSe<sub>3</sub>
Ma, J., Nie, S., Gui, X., Naamneh, M., Jandke, J., Xi, C., … Shi, M. (2022). Multiple mobile excitons manifested as sidebands in quasi-one-dimensional metallic TaSe3. Nature Materials, 21, 423-429. https://doi.org/10.1038/s41563-022-01201-9
Quantitative diffractometric biosensing
Blickenstorfer, Y., Müller, M., Dreyfus, R., Reichmuth, A. M., Fattinger, C., & Frutiger, A. (2021). Quantitative diffractometric biosensing. Physical Review Applied, 15(3), 034023 (24 pp.). https://doi.org/10.1103/PhysRevApplied.15.034023
Universal quantum computing using electronuclear wavefunctions of rare-earth ions
Grimm, M., Beckert, A., Aeppli, G., & Müller, M. (2021). Universal quantum computing using electronuclear wavefunctions of rare-earth ions. PRX Quantum, 2(1), 010312 (19 pp.). https://doi.org/10.1103/PRXQuantum.2.010312
Fluctuation-driven transitions in localized insulators: intermittent metallicity and path chaos precede delocalization
Ros, V., & Müller, M. (2021). Fluctuation-driven transitions in localized insulators: intermittent metallicity and path chaos precede delocalization. Physical Review B, 104(9), 094205 (21 pp.). https://doi.org/10.1103/PhysRevB.104.094205
Perturbative approach to tunneling and quantum interferences in spin clusters
Maceira, I. A., Mila, F., & Müller, M. (2020). Perturbative approach to tunneling and quantum interferences in spin clusters. Physical Review B, 101(10), 104416 (17 pp.). https://doi.org/10.1103/PhysRevB.101.104416
Testing of asymptomatic individuals for fast feedback-control of COVID-19 pandemic
Müller, M., Derlet, P. M., Mudry, C., & Aeppli, G. (2020). Testing of asymptomatic individuals for fast feedback-control of COVID-19 pandemic. Physical Biology, 17(6), 065007 (20 pp.). https://doi.org/10.1088/1478-3975/aba6d0
Spiral order from orientationally correlated random bonds in classical <em>XY</em> models
Scaramucci, A., Shinaoka, H., Mostovoy, M. V., Lin, R., Mudry, C., & Müller, M. (2020). Spiral order from orientationally correlated random bonds in classical XY models. Physical Review Research, 2(1), 013273 (23 pp.). https://doi.org/10.1103/PhysRevResearch.2.013273
Spin fluctuation induced Weyl semimetal state in the paramagnetic phase of EuCd&lt;sub&gt;2&lt;/sub&gt;As&lt;sub&gt;2&lt;/sub&gt;
Ma, J. Z., Nie, S. M., Yi, C. J., Jandke, J., Shang, T., Yao, M. Y., … Shi, M. (2019). Spin fluctuation induced Weyl semimetal state in the paramagnetic phase of EuCd2As2. Science Advances, 5(7), eaaw4718 (8 pp.). https://doi.org/10.1126/sciadv.aaw4718
Light-induced evaporative cooling of holes in the Hubbard model
Werner, P., Eckstein, M., Müller, M., & Refael, G. (2019). Light-induced evaporative cooling of holes in the Hubbard model. Nature Communications, 10, 5556 (7 pp.). https://doi.org/10.1038/s41467-019-13557-9
Exactly solvable model for dynamic nuclear polarization
Rodríguez-Arias, I., Müller, M., Rosso, A., & De Luca, A. (2018). Exactly solvable model for dynamic nuclear polarization. Physical Review B, 98(22), 224202 (15 pp.). https://doi.org/10.1103/PhysRevB.98.224202
Multiferroic magnetic spirals induced by random magnetic exchanges
Scaramucci, A., Shinaoka, H., Mostovoy, M. V., Müller, M., Mudry, C., Troyer, M., & Spaldin, N. A. (2018). Multiferroic magnetic spirals induced by random magnetic exchanges. Physical Review X, 8(1), 011005 (9 pp.). https://doi.org/10.1103/PhysRevX.8.011005
Many-body delocalization as a quantum avalanche
Thiery, T., Huveneers, F., Müller, M., & De Roeck, W. (2018). Many-body delocalization as a quantum avalanche. Physical Review Letters, 121(14), 140601 (6 pp.). https://doi.org/10.1103/PhysRevLett.121.140601
Collision-dominated conductance in clean two-dimensional metals
Uzair, A., Sabeeh, K., & Müller, M. (2018). Collision-dominated conductance in clean two-dimensional metals. Physical Review B, 98(3), 035421 (16 pp.). https://doi.org/10.1103/PhysRevB.98.035421