We studied signatures of quantum chaos in dynamics of Rydberg-dressed bosonic atoms held in a one-dimensional triple-well potential. Long-range nearest-neighbor and next-nearest-neighbor interactions, induced by laser dressing atoms to strongly interacting Rydberg states, drastically affect mean-field and quantum many-body dynamics. By analyzing the mean-field dynamics, classical chaos regions with positive and large Lyapunov exponents were identified as a function of the potential well tilting and dressed interactions. In the quantum regime, it was found that level statistics of the eigen-energies gain a Wigner-Dyson distribution when the Lyapunov exponents are large, giving rise to signatures of strong quantum chaos. We found that both th...
Recent achievements in ultra-cold experiments have made quantum simulation of interacting many-body ...
Seeking signatures of quantum chaos in experimentally realizable many-body systems is of vigorous in...
peer reviewedUnderstanding the emergence of quantum chaos in multipartite systems is challenging in ...
We study nonlinear dynamics of Rydberg-dressed Bose-Einstein condensates (BECs) trapped in a triple-...
Rydberg-dressed ground state atoms are atoms with an electron off-resonantly excited to a very high ...
We study the chaos and hyperchaos of Rydberg-dressed Bose–Einstein condensates (BECs) in a one-dimen...
In the past several decades, cold atom experiments have provided physicists with copious amounts of ...
A Rydberg atom is an atom excited to a high energy level, and there is a strong dipole-dipole intera...
The quantum signature of chaos in Rydberg atoms has been sutdied using a quantum theory of motion an...
International audienceThe Rydberg spectrum of Na2 has been shown previously to alternate when increa...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 1996.Includes bibliographi...
We study the nonequilibrium dynamics of quantum jumps in a one-dimensional chain of atoms. Each atom...
Quantum-many body scarring is a recently discovered paradigm of weak ergodicity breaking that allows...
We study dynamics of bosonic atoms on a two dimensional square lattice, where atomic interactions ar...
We study an open quantum system of atoms with a long-range Rydberg interaction, laser driving, and s...
Recent achievements in ultra-cold experiments have made quantum simulation of interacting many-body ...
Seeking signatures of quantum chaos in experimentally realizable many-body systems is of vigorous in...
peer reviewedUnderstanding the emergence of quantum chaos in multipartite systems is challenging in ...
We study nonlinear dynamics of Rydberg-dressed Bose-Einstein condensates (BECs) trapped in a triple-...
Rydberg-dressed ground state atoms are atoms with an electron off-resonantly excited to a very high ...
We study the chaos and hyperchaos of Rydberg-dressed Bose–Einstein condensates (BECs) in a one-dimen...
In the past several decades, cold atom experiments have provided physicists with copious amounts of ...
A Rydberg atom is an atom excited to a high energy level, and there is a strong dipole-dipole intera...
The quantum signature of chaos in Rydberg atoms has been sutdied using a quantum theory of motion an...
International audienceThe Rydberg spectrum of Na2 has been shown previously to alternate when increa...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 1996.Includes bibliographi...
We study the nonequilibrium dynamics of quantum jumps in a one-dimensional chain of atoms. Each atom...
Quantum-many body scarring is a recently discovered paradigm of weak ergodicity breaking that allows...
We study dynamics of bosonic atoms on a two dimensional square lattice, where atomic interactions ar...
We study an open quantum system of atoms with a long-range Rydberg interaction, laser driving, and s...
Recent achievements in ultra-cold experiments have made quantum simulation of interacting many-body ...
Seeking signatures of quantum chaos in experimentally realizable many-body systems is of vigorous in...
peer reviewedUnderstanding the emergence of quantum chaos in multipartite systems is challenging in ...