Ouvrages publiés à titre de seul auteur (1)

  1. 1. Goldman, N. (2009). Quantum transport in lattices subjected to external gauge fields. Saarbrücken: VDM Verlag.
  2.   Parties d'ouvrages collectifs (1)

  3. 1. Goldman, N., Cooper, N. N., & Dalibard, J. (2017). Preparing and probing Chern bands with cold atoms. In Universal Themes of Bose-Einstein Condensation (pp. 274-298). Cambridge University Press. doi:10.1017/9781316084366.016
  4.   Articles dans des revues avec comité de lecture (66)

  5. 1. Wintersperger, K., Bukov, M., Näger, J., Lellouch, S., Demler, E., Schneider, U., Bloch, I., Goldman, N., & Aidelsburger, M. (2020). Parametric instabilities of interacting bosons in periodically driven 1d optical lattices. Physical Review X, 10(1), 011030. doi:10.1103/PhysRevX.10.011030
  6. 2. Yu, M., Yang, P., Gong, M., Cao, Q., Lu, Q., Liu, H., Zhang, S., Plenio, M. M., Jelezko, F., Ozawa, T., Goldman, N., & Cai, J. (2020). Experimental measurement of the quantum geometric tensor using coupled qubits in diamond. National Science Review, 7(2), 254-260. doi:10.1093/nsr/nwz193
  7. 3. Schweizer, C., Grusdt, F., Berngruber, M., Barbiero, L., Demler, E., Goldman, N., Bloch, I., & Aidelsburger, M. (2019). Floquet approach to ℤ2 lattice gauge theories with ultracold atoms in optical lattices. Nature physics, 15(11), 1168-1173. doi:10.1038/s41567-019-0649-7
  8. 4. Di Liberto, M., Mukherjee, S., & Goldman, N. (2019). Nonlinear dynamics of Aharonov-Bohm cages. Physical Review A, 100, 043829.
  9. 5. Salerno, G., Price, H. M., Lebrat, M., Haüsler, S., Esslinger, T., Corman, L., Brantut, J. P., & Goldman, N. (2019). Quantized Hall Conductance of a Single Atomic Wire: A Proposal Based on Synthetic Dimensions. Physical Review X, 9(4), 041001. doi:10.1103/PhysRevX.9.041001
  10. 6. Barbiero, L., Schweizer, C., Aidelsburger, M., Demler, E., Goldman, N., & Grusdt, F. (2019). Coupling ultracold matter to dynamical gauge fields in optical lattices: From flux attachment to ℤ2 lattice gauge theories. Science advances, 5(10), eaav7444. doi:10.1126/sciadv.aav7444
  11. 7. Boulier, T., Maslek, J., Bukov, M., Bracamontes, C., Magnan, E., Lellouch, S., Demler, E., Goldman, N., & Porto, J. J. (2019). Parametric Heating in a 2D Periodically Driven Bosonic System: Beyond the Weakly Interacting Regime. Physical Review X, 9(1), 011047. doi:10.1103/PhysRevX.9.011047
  12. 8. Mukherjee, S., Chandrasekharan, H. H., Öhberg, P., Goldman, N., & Thomson, R. R. (2018). State-recycling and time-resolved imaging in topological photonic lattices. Nature communications, 9(1), 4209. doi:10.1038/s41467-018-06723-y
  13. 9. Aidelsburger, M., Nascimbène, S., & Goldman, N. (2018). Champs de jauge artificiels dans les matériaux et systèmes synthétiques. Comptes rendus. Physique, 19(6), 394-432. doi:10.1016/j.crhy.2018.03.002
  14. 10. Mukherjee, S., Di Liberto, M., Öhberg, P., Thomson, R. R., & Goldman, N. (2018). Experimental Observation of Aharonov-Bohm Cages in Photonic Lattices. Physical review letters, 121(7), 075502. doi:10.1103/PhysRevLett.121.075502

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