Out-of-Equilibrium Physics in Driven Dissipative Photonic Resonator Arrays

Chapter in Quantum Simulations with Photons and Polaritons, Springer Nature (2017) 43-70

Authors:

Changsuk Noh, Stephen R Clark, Dieter Jaksch, Dimitris G Angelakis

Few-qubit quantum-classical simulation of strongly correlated lattice fermions

EPJ Quantum Technology 3:1 (2016)

Authors:

JM Kreula, L García-Álvarez, L Lamata, SR Clark, E Solano, D Jaksch

Measuring correlations of cold-atom systems using multiple quantum probes

Physical Review A American Physical Society 94:5 (2016) 053634

Authors:

Michael Streif, Andreas Buchleitner, Dieter Jaksch, Jordi Mur-Petit

Abstract:

We present a non-destructive method to probe a complex quantum system using multiple impurity atoms as quantum probes. Our protocol provides access to different equilibrium properties of the system by changing its coupling to the probes. In particular, we show that measurements with two probes reveal the system's non-local two-point density correlations, for probe-system contact interactions. We illustrate our findings with analytic and numerical calculations for the Bose-Hubbard model in the weakly and strongly-interacting regimes, in conditions relevant to ongoing experiments in cold atom systems.

Topological pumping of photons in nonlinear resonator arrays

Physical Review Letters American Physical Society 117 (2016) 213603

Authors:

Dieter Jaksch, Jirawat Tangpanitanon, Victor M Bastidas, Sarah Al-Assam, Pedram Rousham, Dimitris G Angelakis

Abstract:

We show how to implement topological or Thouless pumping of interacting photons in one dimensional nonlinear resonator arrays, by simply modulating the frequency of the resonators periodically in space and time. The interplay between interactions and the adiabatic modulations enables robust transport of Fock states with few photons per site. We analyze the transport mechanism via an effective analytic model and study its topological properties and its protection to noise. We conclude by a detailed study of an implementation with existing circuit QED architectures.

Quantum mechanical calculation of Rydberg-Rydberg autoionization rates

JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS 49:20 (2016) ARTN 204004

Authors:

M Kiffner, D Ceresoli, W Li, D Jaksch