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Ma, R., Saxberg, B., Owens, C., Leung, N., Lu, Y., Simon, J., & Schuster, D. I. (2019). A dissipatively stabilized Mott insulator of photons. Nature, 566(7742), 51–57.

Authors 7
  1. Ruichao Ma (first)
  2. Brendan Saxberg (additional)
  3. Clai Owens (additional)
  4. Nelson Leung (additional)
  5. Yao Lu (additional)
  6. Jonathan Simon (additional)
  7. David I. Schuster (additional)
References 55 Referenced 275
  1. Bakr, W. S., Gillen, J. I., Peng, A., Folling, S. & Greiner, M. A quantum gas microscope for detecting single atoms in a Hubbard-regime optical lattice. Nature 462, 74–77 (2009). (10.1038/nature08482) / Nature by WS Bakr (2009)
  2. Sherson, J. F. et al. Single-atom-resolved fluorescence imaging of an atomic Mott insulator. Nature 467, 68–72 (2010). (10.1038/nature09378) / Nature by JF Sherson (2010)
  3. Anderson, M. H. et al. Observation of Bose–Einstein condensation in a dilute atomic vapor. Science 269, 198–201 (1995). (10.1126/science.269.5221.198) / Science by MH Anderson (1995)
  4. Davis, K. B. et al. Bose–Einstein condensation in a gas of sodium atoms. Phys. Rev. Lett. 75, 3969–3973 (1995). (10.1103/PhysRevLett.75.3969) / Phys. Rev. Lett. by KB Davis (1995)
  5. Greiner, M., Mandel, O., Esslinger, T., Hänsch, T. W. & Bloch, I. Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms. Nature 415, 39–44 (2002). (10.1038/415039a) / Nature by M Greiner (2002)
  6. Simon, J. et al. Quantum simulation of antiferromagnetic spin chains in an optical lattice. Nature 472, 307–312 (2011). (10.1038/nature09994) / Nature by J Simon (2011)
  7. Mazurenko, A. et al. A cold-atom Fermi–Hubbard antiferromagnet. Nature 545, 462–466 (2017). (10.1038/nature22362) / Nature by A Mazurenko (2017)
  8. He, Y.-C., Grusdt, F., Kaufman, A., Greiner, M. & Vishwanath, A. Realizing and adiabatically preparing bosonic integer and fractional quantum Hall states in optical lattices. Phys. Rev. B 96, 201103 (2017). (10.1103/PhysRevB.96.201103) / Phys. Rev. B by Y-C He (2017)
  9. Gring, M. et al. Relaxation and prethermalization in an isolated quantum system. Science 337, 1318–1322 (2012). (10.1126/science.1224953) / Science by M Gring (2012)
  10. Schreiber, M. et al. Observation of many-body localization of interacting fermions in a quasirandom optical lattice. Science 349, 842–845 (2015). (10.1126/science.aaa7432) / Science by M Schreiber (2015)
  11. Kaufman, A. M. et al. Quantum thermalization through entanglement in an isolated many-body system. Science 353, 794–800 (2016). (10.1126/science.aaf6725) / Science by AM Kaufman (2016)
  12. Hartmann, M. J., Brandão, F. G. S. L. & Plenio, M. B. Strongly interacting polaritons in coupled arrays of cavities. Nat. Phys. 2, 849–855 (2006). / Phys. Rev. X by M Barkeshli (2012)
  13. Greentree, A. D., Tahan, C., Cole, J. H. & Hollenberg, L. C. L. Quantum phase transitions of light. Nat. Phys. 2, 856–861 (2006). (10.1038/nphys466) / Nat. Phys. by AD Greentree (2006)
  14. Angelakis, D. G., Santos, M. F. & Bose, S. Photon blockade induced Mott transitions and XY spin models in coupled cavity arrays. Phys. Rev. A 76, 031805 (2007). / Phys. Rev. X by M Barkeshli (2012)
  15. Noh, C. & Angelakis, D. G. Quantum simulations and many-body physics with light. Rep. Prog. Phys. 80, 016401 (2016). (10.1088/0034-4885/80/1/016401) / Rep. Prog. Phys. by C Noh (2016)
  16. Hartmann, M. J. Quantum simulation with interacting photons. J. Opt. 18, 104005 (2016). (10.1088/2040-8978/18/10/104005) / J. Opt. by MJ Hartmann (2016)
  17. Gu, X., Kockum, A. F. & Miranowicz, A., Liu, Y. & Nori, F. Microwave photonics with superconducting quantum circuits. Phys. Rep. 718–719, 1–102 (2017). (10.1016/j.physrep.2017.10.002) / Phys. Rep. by X Gu (2017)
  18. Wallraff, A. et al. Strong coupling of a single photon to a superconducting qubit using circuit quantum electrodynamics. Nature 431, 162–167 (2004). (10.1038/nature02851) / Nature by A Wallraff (2004)
  19. Salathé, Y. et al. Digital quantum simulation of spin models with circuit quantum electrodynamics. Phys. Rev. X 5, 021027 (2015). / Phys. Rev. X by Y Salathé (2015)
  20. Barends, R. et al. Digital quantum simulation of fermionic models with a superconducting circuit. Nat. Commun. 6, 7654 (2015). (10.1038/ncomms8654) / Nat. Commun. by R Barends (2015)
  21. O’Malley, P. et al. Scalable quantum simulation of molecular energies. Phys. Rev. X 6, 031007 (2016). / Phys. Rev. X by P O’Malley (2016)
  22. Kandala, A. et al. Hardware-efficient variational quantum eigensolver for small molecules and quantum magnets. Nature 549, 242–246 (2017). (10.1038/nature23879) / Nature by A Kandala (2017)
  23. Underwood, D. L., Shanks, W. E., Koch, J. & Houck, A. A. Low-disorder microwave cavity lattices for quantum simulation with photons. Phys. Rev. A 86, 023837 (2012). (10.1103/PhysRevA.86.023837) / Phys. Rev. A by DL Underwood (2012)
  24. Roushan, P. et al. Chiral ground-state currents of interacting photons in a synthetic magnetic field. Nat. Phys. 13, 146–151 (2017). (10.1038/nphys3930) / Nat. Phys. by P Roushan (2017)
  25. Owens, C. et al. Quarter-flux Hofstadter lattice in a qubit-compatible microwave cavity array. Phys. Rev. A 97, 013818 (2018). (10.1103/PhysRevA.97.013818) / Phys. Rev. A by C Owens (2018)
  26. Raftery, J., Sadri, D., Schmidt, S., Türeci, H. E. & Houck, A. A. Observation of a dissipation-induced classical to quantum transition. Phys. Rev. X 4, 031043 (2014). / Phys. Rev. X by J Raftery (2014)
  27. Fitzpatrick, M., Sundaresan, N. M., Li, A. C., Koch, J. & Houck, A. A. Observation of a dissipative phase transition in a one-dimensional circuit QED lattice. Phys. Rev. X 7, 011016 (2017). / Phys. Rev. X by M Fitzpatrick (2017)
  28. Roushan, P. et al. Spectroscopic signatures of localization with interacting photons in superconducting qubits. Science 358, 1175–1179 (2017). (10.1126/science.aao1401) / Science by P Roushan (2017)
  29. Poyatos, J., Cirac, J. & Zoller, P. Quantum reservoir engineering with laser cooled trapped ions. Phys. Rev. Lett. 77, 4728–4731 (1996). (10.1103/PhysRevLett.77.4728) / Phys. Rev. Lett. by J Poyatos (1996)
  30. Plenio, M. B., Huelga, S. F., Beige, A. & Knight, P. L. Cavity-loss-induced generation of entangled atoms. Phys. Rev. A 59, 2468–2475 (1999). (10.1103/PhysRevA.59.2468) / Phys. Rev. A by MB Plenio (1999)
  31. Biella, A. et al. Phase diagram of incoherently driven strongly correlated photonic lattices. Phys. Rev. A 96, 023839 (2017). (10.1103/PhysRevA.96.023839) / Phys. Rev. A by A Biella (2017)
  32. Barreiro, J. T. et al. An open-system quantum simulator with trapped ions. Nature 470, 486–491 (2011). (10.1038/nature09801) / Nature by JT Barreiro (2011)
  33. Lu, Y. et al. Universal stabilization of a parametrically coupled qubit. Phys. Rev. Lett. 119, 150502 (2017). (10.1103/PhysRevLett.119.150502) / Phys. Rev. Lett. by Y Lu (2017)
  34. Shankar, S. et al. Autonomously stabilized entanglement between two superconducting quantum bits. Nature 504, 419–422 (2013). (10.1038/nature12802) / Nature by S Shankar (2013)
  35. Kapit, E., Chalker, J. T. & Simon, S. H. Passive correction of quantum logical errors in a driven, dissipative system: a blueprint for an analog quantum code fabric. Phys. Rev. A 91, 062324 (2015). (10.1103/PhysRevA.91.062324) / Phys. Rev. A by E Kapit (2015)
  36. Kapit, E. Hardware-efficient and fully autonomous quantum error correction in superconducting circuits. Phys. Rev. Lett. 116, 150501 (2016). (10.1103/PhysRevLett.116.150501) / Phys. Rev. Lett. by E Kapit (2016)
  37. Albert, V. V. et al. Pair-cat codes: autonomous error-correction with low-order nonlinearity. Preprint at https://arxiv.org/abs/1801.05897 (2018).
  38. Ma, R., Owens, C., Houck, A., Schuster, D. I. & Simon, J. Autonomous stabilizer for incompressible photon fluids and solids. Phys. Rev. A 95, 043811 (2017). (10.1103/PhysRevA.95.043811) / Phys. Rev. A by R Ma (2017)
  39. Kapit, E., Hafezi, M. & Simon, S. H. Induced self-stabilization in fractional quantum Hall states of light. Phys. Rev. X 4, 031039 (2014). / Phys. Rev. X by E Kapit (2014)
  40. Hafezi, M., Adhikari, P. & Taylor, J. Chemical potential for light by parametric coupling. Phys. Rev. B 92, 174305 (2015). (10.1103/PhysRevB.92.174305) / Phys. Rev. B by M Hafezi (2015)
  41. Lebreuilly, J., Wouters, M. & Carusotto, I. Towards strongly correlated photons in arrays of dissipative nonlinear cavities under a frequency-dependent incoherent pumping. C. R. Phys. 17, 836–860 (2016). (10.1016/j.crhy.2016.07.001) / C. R. Phys. by J Lebreuilly (2016)
  42. Lebreuilly, J. et al. Stabilizing strongly correlated photon fluids with non-Markovian reservoirs. Phys. Rev. A 96, 033828 (2017). (10.1103/PhysRevA.96.033828) / Phys. Rev. A by J Lebreuilly (2017)
  43. Hacohen-Gourgy, S., Ramasesh, V. V., De Grandi, C., Siddiqi, I. & Girvin, S. M. Cooling and autonomous feedback in a Bose–Hubbard chain with attractive interactions. Phys. Rev. Lett. 115, 240501 (2015). (10.1103/PhysRevLett.115.240501) / Phys. Rev. Lett. by S Hacohen-Gourgy (2015)
  44. Koch, J. et al. Charge-insensitive qubit design derived from the Cooper pair box. Phys. Rev. A 76, 042319 (2007). (10.1103/PhysRevA.76.042319) / Phys. Rev. A by J Koch (2007)
  45. Leek, P. et al. Using sideband transitions for two-qubit operations in superconducting circuits. Phys. Rev. B 79, 180511 (2009). (10.1103/PhysRevB.79.180511) / Phys. Rev. B by P Leek (2009)
  46. Ma, R. et al. Photon-assisted tunneling in a biased strongly correlated Bose gas. Phys. Rev. Lett. 107, 095301 (2011). (10.1103/PhysRevLett.107.095301) / Phys. Rev. Lett. by R Ma (2011)
  47. Gemelke, N., Zhang, X., Hung, C.-L. & Chin, C. In situ observation of incompressible Mott-insulating domains in ultracold atomic gases. Nature 460, 995 (2009). (10.1038/nature08244) / Nature by N Gemelke (2009)
  48. Verstraete, F., Wolf, M. M. & Cirac, J. I. Quantum computation and quantum-state engineering driven by dissipation. Nat. Phys. 5, 633–636 (2009). (10.1038/nphys1342) / Nat. Phys. by F Verstraete (2009)
  49. Cheneau, M. et al. Light-cone-like spreading of correlations in a quantum many-body system. Nature 481, 484–487 (2012). (10.1038/nature10748) / Nature by M Cheneau (2012)
  50. Islam, R. et al. Measuring entanglement entropy in a quantum many-body system. Nature 528, 77–83 (2015). (10.1038/nature15750) / Nature by R Islam (2015)
  51. Jeffrey, E. et al. Fast accurate state measurement with superconducting qubits. Phys. Rev. Lett. 112, 190504 (2014). (10.1103/PhysRevLett.112.190504) / Phys. Rev. Lett. by E Jeffrey (2014)
  52. Umucalilar, R. & Carusotto, I. Fractional quantum Hall states of photons in an array of dissipative coupled cavities. Phys. Rev. Lett. 108, 206809 (2012). (10.1103/PhysRevLett.108.206809) / Phys. Rev. Lett. by R Umucalilar (2012)
  53. Anderson, B. M., Ma, R., Owens, C., Schuster, D. I. & Simon, J. Engineering topological many-body materials in microwave cavity arrays. Phys. Rev. X 6, 041043 (2016). / Phys. Rev. X by BM Anderson (2016)
  54. Ningyuan, J., Owens, C., Sommer, A., Schuster, D. & Simon, J. Time- and site-resolved dynamics in a topological circuit. Phys. Rev. X 5, 021031 (2015). / Phys. Rev. X by J Ningyuan (2015)
  55. Barkeshli, M. & Qi, X.-L. Topological nematic states and non-Abelian lattice dislocations. Phys. Rev. X 2, 031013 (2012). / Phys. Rev. X by M Barkeshli (2012)
Dates
Type When
Created 6 years, 7 months ago (Feb. 6, 2019, 2:05 p.m.)
Deposited 9 months, 1 week ago (Nov. 27, 2024, 7:16 p.m.)
Indexed 2 days, 20 hours ago (Sept. 4, 2025, 9:47 a.m.)
Issued 6 years, 7 months ago (Feb. 6, 2019)
Published 6 years, 7 months ago (Feb. 6, 2019)
Published Online 6 years, 7 months ago (Feb. 6, 2019)
Published Print 6 years, 7 months ago (Feb. 7, 2019)
Funders 0

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@article{Ma_2019, title={A dissipatively stabilized Mott insulator of photons}, volume={566}, ISSN={1476-4687}, url={http://dx.doi.org/10.1038/s41586-019-0897-9}, DOI={10.1038/s41586-019-0897-9}, number={7742}, journal={Nature}, publisher={Springer Science and Business Media LLC}, author={Ma, Ruichao and Saxberg, Brendan and Owens, Clai and Leung, Nelson and Lu, Yao and Simon, Jonathan and Schuster, David I.}, year={2019}, month=feb, pages={51–57} }