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On-chip quantum simulation with superconducting circuits
Using a well-controlled quantum system to simulate complex quantum matter is an idea that
has been around for 30 years and put into practice in systems of ultracold atoms for more …
has been around for 30 years and put into practice in systems of ultracold atoms for more …
Quantum simulations and many-body physics with light
In this review we discuss the works in the area of quantum simulation and many-body
physics with light, from the early proposals on equilibrium models to the more recent works …
physics with light, from the early proposals on equilibrium models to the more recent works …
Quantum simulation with interacting photons
MJ Hartmann - Journal of Optics, 2016 - iopscience.iop.org
Enhancing optical nonlinearities so that they become appreciable on the single photon level
and lead to nonclassical light fields has been a central objective in quantum optics for many …
and lead to nonclassical light fields has been a central objective in quantum optics for many …
Circuit QED lattices: Towards quantum simulation with superconducting circuits
Abstract The Jaynes‐Cummings model describes the coupling between photons and a
single two‐level atom in a simplified representation of light‐matter interactions. In circuit …
single two‐level atom in a simplified representation of light‐matter interactions. In circuit …
Time-reversal-symmetry breaking in circuit-QED-based photon lattices
Breaking time-reversal symmetry is a prerequisite for accessing certain interesting many-
body states such as fractional quantum Hall states. For polaritons, charge neutrality prevents …
body states such as fractional quantum Hall states. For polaritons, charge neutrality prevents …
[PDF][PDF] Circuit QED: superconducting qubits coupled to microwave photons
SM Girvin - … and control of engineered quantum systems, 2014 - boulderschool.yale.edu
Circuit QED: Superconducting Qubits Coupled to Microwave Photons Page 1 Circuit QED:
Superconducting Qubits Coupled to Microwave Photons Steven M. Girvin Yale University …
Superconducting Qubits Coupled to Microwave Photons Steven M. Girvin Yale University …
Quantum many‐body phenomena in coupled cavity arrays
The increasing level of experimental control over atomic and optical systems gained in
recent years has paved the way for the exploration of new physical regimes in quantum …
recent years has paved the way for the exploration of new physical regimes in quantum …
Superfluid–Mott-insulator transition of light in the Jaynes-Cummings lattice
Regular arrays of electromagnetic resonators, in turn coupled coherently to individual
quantum two-level systems, exhibit a quantum phase transition of polaritons from a …
quantum two-level systems, exhibit a quantum phase transition of polaritons from a …
Phase transition of light in cavity QED lattices
Systems of strongly interacting atoms and photons, which can be realized wiring up
individual cavity QED systems into lattices, are perceived as a new platform for quantum …
individual cavity QED systems into lattices, are perceived as a new platform for quantum …
Strong coupling theory for the Jaynes-Cummings-Hubbard model
S Schmidt, G Blatter - Physical review letters, 2009 - APS
We present an analytic strong-coupling approach to the phase diagram and elementary
excitations of the Jaynes-Cummings-Hubbard model describing a superfluid-insulator …
excitations of the Jaynes-Cummings-Hubbard model describing a superfluid-insulator …