The recent experimental observation of spinor self-ordering of ultracold atoms in optical resonators has set the stage for the exploration of emergent magnetic orders in quantum-gas-cavity systems. Based on this platform, we introduce a generic scheme for the implementation of long-range quantum spin Hamiltonians composed of various types of couplings, including Heisenberg and Dzyaloshinskii-Moriya interactions. Our model is composed of an effective two-component Bose-Einstein condensate, driven by two classical pump lasers and coupled to a single dynamic mode of a linear cavity in a double A scheme. Cavity photons mediate the long-range spin-spin interactions with spatially modulated coupling coefficients, where the latter ones can be tune...
We investigate the potential to induce long-range spin interactions in a Mott insulator via the quan...
We show that atoms trapped in microcavities that interact via the exchange of virtual photons can mo...
We show that atoms trapped in microcavities that interact via the exchange of virtual photons can mo...
The recent experimental observation of spinor self-ordering of ultracold atoms in optical resonators...
The recent experimental observation of spinor self-ordering of ultracold atoms in optical resonators...
Quantum spin liquids provide paradigmatic examples of highly entangled quantum states of matter. Fru...
Quantum spin liquids provide paradigmatic examples of highly entangled quantum states of matter. Fru...
Quantum spin liquid states are realized in systems with frustrated magnetic interactions. Here, the ...
Funding: J. K. acknowledges support from SU2P.We observe the joint spin-spatial (spinor) self-organi...
We review the recent developments and the current status in the field of quantum-gas cavity QED. Sin...
We present a platform for the simulation of quantum magnetism with full control of interactions betw...
The coupled nonlinear dynamics of ultracold quantum matter and electromagnetic field modes in an opt...
We present a platform for the simulation of quantum magnetism with full control of interactions betw...
We investigate a strongly correlated system of light and matter in two-dimensional cavity arrays. We...
We investigate a strongly correlated system of light and matter in two-dimensional cavity arrays. We...
We investigate the potential to induce long-range spin interactions in a Mott insulator via the quan...
We show that atoms trapped in microcavities that interact via the exchange of virtual photons can mo...
We show that atoms trapped in microcavities that interact via the exchange of virtual photons can mo...
The recent experimental observation of spinor self-ordering of ultracold atoms in optical resonators...
The recent experimental observation of spinor self-ordering of ultracold atoms in optical resonators...
Quantum spin liquids provide paradigmatic examples of highly entangled quantum states of matter. Fru...
Quantum spin liquids provide paradigmatic examples of highly entangled quantum states of matter. Fru...
Quantum spin liquid states are realized in systems with frustrated magnetic interactions. Here, the ...
Funding: J. K. acknowledges support from SU2P.We observe the joint spin-spatial (spinor) self-organi...
We review the recent developments and the current status in the field of quantum-gas cavity QED. Sin...
We present a platform for the simulation of quantum magnetism with full control of interactions betw...
The coupled nonlinear dynamics of ultracold quantum matter and electromagnetic field modes in an opt...
We present a platform for the simulation of quantum magnetism with full control of interactions betw...
We investigate a strongly correlated system of light and matter in two-dimensional cavity arrays. We...
We investigate a strongly correlated system of light and matter in two-dimensional cavity arrays. We...
We investigate the potential to induce long-range spin interactions in a Mott insulator via the quan...
We show that atoms trapped in microcavities that interact via the exchange of virtual photons can mo...
We show that atoms trapped in microcavities that interact via the exchange of virtual photons can mo...