• R. P. Cameron, “Constraints for electric charge from Maxwell’s equations and boundary conditions”, Phys. Scr. 97, 035502 (2022).
  • S. Flannigan, N. Pearson, G. H. Low, A. Buyskikh, I. Bloch, P. Zoller, M. Troyer, and A. J. Daley, “Propagation of errors and quantitative quantum simulation with quantum advantage”, Quantum Sci. Technol. 7, 045025 (2022).
  • G. Pelegrí, A. J. Daley, and J. D. Pritchard, “High-fidelity multiqubit Rydberg gates via two-photon adiabatic rapid passage”, Quantum Sci. Technol. 7, 045020 (2022).
  • A. J. Daley, I. Bloch, C. Kokail, S. Flannigan, N. Pearson, M. Troyer, and P. Zoller, “Practical quantum advantage in quantum simulation”, Nature 607, 667–676 (2022).
  • S. Dutta, A. Buyskikh, A. J. Daley, and E. J. Mueller, “Density matrix renormalization group for continuous quantum systems”, Phys. Rev. Lett. 128, 230401 (2022).
  • V. Link, K. Müller, R. G. Lena, K. Luoma, F. Damanet, W. T. Strunz, and A. J. Daley, “Non-Markovian quantum dynamics in strongly coupled multimode cavities conditioned on continuous measurement”, PRX Quantum 3, 020348 (2022).
  • T. Hashizume, S. Kuriyattil, A. J. Daley, and G. Bentsen, “Tunable geometries in sparse Clifford circuits”, Symmetry 14(4), 666 (2022).
  • T. Hashizume, G. S. Bentsen, and A. J. Daley, “Measurement-induced phase transitions in sparse nonlocal scramblers”, Phys. Rev. Research 4, 013174 (2022).
  • S. Flannigan, F. Damanet, and A. J. Daley, “Many-body quantum state diffusion for non-Markovian dynamics in strongly interacting systems”, Phys. Rev. Lett. 128, 063601 (2022).
  • G. Naresh-Kumar, P. R. Edwards, T. Batten, M. Nouf-Allehiani, A. Vilalta-Clemente, A. J. Wilkinson, E. Le Boulbar, P. A. Shields, B. Starosta, B. Hourahine, R. W. Martin, and C. Trager-Cowan, “Non-destructive imaging of residual strains in GaN and their effect on optical and electrical properties using correlative light–electron microscopy”, J. Appl. Phys. 131, 075303 (2022).
  • H. Yang, N. Samantaray, and J. Jeffers, “Quantum illumination with multiplexed photodetection”, Phys. Rev. Applied 18, 034021 (2022).
  • H. Spencer-Wood, J. Jeffers, and S. Croke, “Measurement disturbance tradeoffs in three-qubit unsupervised quantum classification”, Phys. Rev. A 105, 062447 (2022).
  • G. Tatsi, D. W. Canning, U. Zanforlin, L. Mazzarella, J. Jeffers, and G. S. Buller, “Manipulating thermal light via displaced-photon subtraction”, Phys. Rev. A 105, 053701 (2022).
  • M. A. Zeb, P. G. Kirton, and J. Keeling, “Incoherent charge transport in an organic polariton condensate”, Phys. Rev. B 106, 195109 (2022).
  • D. Gribben, A. Strathearn, G. E. Fux, P. Kirton, and B. W. Lovett, “Using the environment to understand non-Markovian open quantum systems”, Quantum 6, 847 (2022).
  • N. Werren, E. M. Gauger, and P. Kirton, “A quantum model of lasing without inversion”, New J. Phys. 24, 093027 (2022).
  • D. Gribben, D. M. Rouse, J. Iles-Smith, A. Strathearn, H. Maguire, P. Kirton, A. Nazir, E. M. Gauger, and B. W. Lovett, “Exact dynamics of nonadditive environments in non-Markovian open quantum systems”, PRX Quantum 3, 010321 (2022).
  • J. Morgan and B. W. J. McNeil, “X-ray pulse generation with ultra-fast flipping of its orbital angular momentum”, Opt. Express 30, 31171-31181 (2022).
  • I. Alonso, C. Alpigiani, R. Bingham, P. F. Griffin, and D. K. L. Oi, “Cold atoms in space: community workshop summary and proposed road-map”, EPJ Quantum Technol. 9, 30 (2022).
  • T. Brougham and D. K. L. Oi, “Modelling efficient BB84 with applications for medium-range, terrestrial free-space QKD”, New J. Phys. 24, 075002 (2022).
  • A. Belenchia, M. Carlesso, O. Bayraktar, D. Dequal, I. Derkach, G. Gasbarri, W. Herr, Y. L. Li, M. Rademacher, J. Sidhu, D. K. L. Oi, S. T. Seidel, R. Kaltenbaek, C. Marquardt, H. Ulbricht, V. C. Usenko, L. Wörner, A. Xuereb, M. Paternostro, and A. Bassi, “Quantum physics in space”, Phys. Rep. 951, 1-70 (2022).
  • J. S. Sidhu, T. Brougham, D. McArthur, R. G. Pousa, and D. K. L. Oi, “Finite key effects in satellite quantum key distribution”, npj Quantum Inf. 8, 18 (2022).
  • G. N. Campbell, Z. Shuangyou, L. Del Bino, P. Del’Haye, and G.-L. Oppo, “Counterpropagating light in ring resonators: switching fronts, plateaus, and oscillations”, Phys. Rev. A 106, 043507 (2022).
  • G. W. Henderson, G. R. M. Robb, G.-L. Oppo, and A. M. Yao, “Control of light-atom solitons and atomic transport by optical vortex beams propagating through a Bose-Einstein condensate”, Phys. Rev. Lett. 129, 073902 (2022).
  • M. Rowley, P.-H. Hanzard, A. Cutrona, H. Bao, S. T. Chu, B. E. Little, R. Morandotti, D. J. Moss, G.-L. Oppo, J. S. T. Gongora, M. Peccianti, and A. Pasquazi, “Self-emergence of robust solitons in a microcavity”, Nature 608, 303–309 (2022).
  • T. Ackemann, G. Labeyrie, A. Costa Boquete, G. Baio, J. G. M. Walker, R. Kaiser, G.-L. Oppo, and G. R. M. Robb, “Coupling of magnetic and optomechanical structuring in cold atoms”, Phys. Rev. A 105, 063508 (2022).
  • J. G. M. Walker, G. R. M. Robb, G.-L. Oppo, and T. Ackemann, “Dynamics of optomechanical droplets in a Bose-Einstein condensate”, Phys. Rev. A 105, 063305 (2022).
  • G. Xu, L. Hill, J. Fatome, G.-L. Oppo, M. Erkintalo, S. G. Murdoch, and S. Coen, “Breathing dynamics of symmetry-broken temporal cavity solitons in Kerr ring resonators”, Opt. Lett. 47(6), 1486-1489 (2022).
  • G.-L. Oppo, “Defect-mediated turbulence in lasers with injected signals”, Chaos Solitons Fractals 155, 111750 (2022).
  • G. Baio, T. Ackemann, G.-L. Oppo, G. Robb, and A. Yao, “Rotating and spiraling spatial dissipative solitons of light and cold atoms”, Phys. Rev. A 105, 023318 (2022).
  • G.-L. Oppo, D. Grant, and M. Eslami, “Temporal cavity solitons and frequency combs via quantum interference”, Phys. Rev. A 105, L011501 (2022).
  • N. Moroney, L. Del Bino, S. Zhang, M. T. M. Woodely, L. Hill, T. Wildi, V. J. Wittwer, T. Sudmeyer, G.-L. Oppo, M. R. Vanner, V. Brasch, T. Herr, and P. Del’Haye, “A Kerr polarization controller”, Nat. Commun. 13, 398 (2022).
  • A. T. Gisbert, N. Piovella, G. R.M. Robb, and D. G. McLellan, “Superradiant atomic recoil lasing with orbital-angular-momentum light”, Phys. Rev. A 105, 023526 (2022).
  • G. Labeyrie, J. G.M. Walker, G. R.M. Robb, R. Kaiser, and T. Ackemann, “Ground-state coherence versus orientation: competing mechanisms for light-induced magnetic self-organization in cold atoms”, Phys. Rev. A 105, 023505 (2022).