Intermediate-scale quantum technologies provide new opportunities for scientific discovery, yet they also pose the challenge of identifying suitable problems that can take advantage of such devices in spite of their present-day limitations. In solid-state materials, fractional quantum Hall (FQH) phases continue to attract attention as hosts of emergent geometrical excitations analogous to gravitons, resulting from the non-perturbative interactions between the electrons. However, the direct observation of such excitations remains a challenge. Here, we identify a quasi-one-dimensional model that captures the geometric properties and graviton dynamics of FQH states. We then simulate geometric quench and the subsequent graviton dynamics on the ...
We introduce the quantum-house effect, a non-local quantum phenomenon which goes against classical i...
The Moore-Read state is one the most well known non-Abelian fractional quantum Hall states. It suppo...
The utility of effective model spaces in quantum simulations of non-relativistic quantum many-body s...
Intermediate-scale quantum technologies provide new opportunities for scientific discovery, yet they...
We introduce a quench of the geometry of Landau level orbitals as a probe of non-equilibrium dynamic...
We propose a frustration-free model for the Moore-Read quantum Hall state on sufficiently thin cylin...
The emergence of a collective behavior in a many-body system is responsible of the quantum criticali...
We propose a measurement-based model for fault-tolerant quantum computation that can be realised wit...
Particle loss is the ultimate challenge for preparation of strongly correlated many-body states of p...
Practical quantum computing holds clear promise in addressing problems not generally tractable with ...
Programmable quantum simulators such as superconducting quantum processors and ultracold atomic latt...
ManuscriptThe LLM's 1/2 BPS solutions of IIB supergravity are known to be closely related to the int...
It has recently been pointed out that phases of matter with intrinsic topological order, like the fr...
We present the fractional quantum Hall (FQH) effect as a candidate emergent phenomenon. Unlike some ...
Understanding topological matter in the fractional quantum Hall (FQH) effect requires identifying th...
We introduce the quantum-house effect, a non-local quantum phenomenon which goes against classical i...
The Moore-Read state is one the most well known non-Abelian fractional quantum Hall states. It suppo...
The utility of effective model spaces in quantum simulations of non-relativistic quantum many-body s...
Intermediate-scale quantum technologies provide new opportunities for scientific discovery, yet they...
We introduce a quench of the geometry of Landau level orbitals as a probe of non-equilibrium dynamic...
We propose a frustration-free model for the Moore-Read quantum Hall state on sufficiently thin cylin...
The emergence of a collective behavior in a many-body system is responsible of the quantum criticali...
We propose a measurement-based model for fault-tolerant quantum computation that can be realised wit...
Particle loss is the ultimate challenge for preparation of strongly correlated many-body states of p...
Practical quantum computing holds clear promise in addressing problems not generally tractable with ...
Programmable quantum simulators such as superconducting quantum processors and ultracold atomic latt...
ManuscriptThe LLM's 1/2 BPS solutions of IIB supergravity are known to be closely related to the int...
It has recently been pointed out that phases of matter with intrinsic topological order, like the fr...
We present the fractional quantum Hall (FQH) effect as a candidate emergent phenomenon. Unlike some ...
Understanding topological matter in the fractional quantum Hall (FQH) effect requires identifying th...
We introduce the quantum-house effect, a non-local quantum phenomenon which goes against classical i...
The Moore-Read state is one the most well known non-Abelian fractional quantum Hall states. It suppo...
The utility of effective model spaces in quantum simulations of non-relativistic quantum many-body s...