We discuss the effects of many-body coherence on the speed of evolution of ultracold atomic gases and the relation to quantum speed limits. Our approach is focused on two related systems, spinless fermions and the bosonic Tonks-Girardeau gas, which possess equivalent density dynamics but very different coherence properties. To illustrate the effect of the coherence on the dynamics, we consider squeezing an anharmonic potential which confines the particles and find that the speed of the evolution exhibits subtle but fundamental differences between the two systems. Furthermore, we explore the difference in the driven dynamics by implementing a shortcut to adiabaticity designed to reduce spurious excitations. We show that collisions between th...
The resource theory of asymmetry is a framework for classifying and quantifying the symmetry-breakin...
The presence of noise or the interaction with an environment can radically change the dynamics of ob...
Although quantum coherence is a well known phenomenon in quantum information theory and quantum opti...
The dynamics of quantum phase transitions poses one of the most challenging problems in modern many-...
Coherent quantum control over many-particle quantum systems requires high-fidelity dynamics. One way...
The quantum speed of evolution for the phase covariant map is investigated. This involves absorption...
We show that a pulsed stimulus can be used to generate many-body quantum coherences in light-matter ...
The study and control of coherence in quantum systems is one of the most exciting recent development...
The attempt to gain a theoretical understanding of the concept of time in quantum mechanics has trig...
Supersymmetry allows one to build a hierarchy of Hamiltonians that share the same spectral propertie...
The quantum speed limit indicates the maximal evolution speed of the quantum system. In this work, w...
The common perception is that strong coupling to the environment will always render the evolution of...
Quantum coherence quantifies the amount of superposition a quantum state can have in a given basis. ...
We study transitionless quantum driving in an infinite-range many-body system described by the Lipki...
A major barrier for the development of new quantum technologies is fast and robust methods for prepa...
The resource theory of asymmetry is a framework for classifying and quantifying the symmetry-breakin...
The presence of noise or the interaction with an environment can radically change the dynamics of ob...
Although quantum coherence is a well known phenomenon in quantum information theory and quantum opti...
The dynamics of quantum phase transitions poses one of the most challenging problems in modern many-...
Coherent quantum control over many-particle quantum systems requires high-fidelity dynamics. One way...
The quantum speed of evolution for the phase covariant map is investigated. This involves absorption...
We show that a pulsed stimulus can be used to generate many-body quantum coherences in light-matter ...
The study and control of coherence in quantum systems is one of the most exciting recent development...
The attempt to gain a theoretical understanding of the concept of time in quantum mechanics has trig...
Supersymmetry allows one to build a hierarchy of Hamiltonians that share the same spectral propertie...
The quantum speed limit indicates the maximal evolution speed of the quantum system. In this work, w...
The common perception is that strong coupling to the environment will always render the evolution of...
Quantum coherence quantifies the amount of superposition a quantum state can have in a given basis. ...
We study transitionless quantum driving in an infinite-range many-body system described by the Lipki...
A major barrier for the development of new quantum technologies is fast and robust methods for prepa...
The resource theory of asymmetry is a framework for classifying and quantifying the symmetry-breakin...
The presence of noise or the interaction with an environment can radically change the dynamics of ob...
Although quantum coherence is a well known phenomenon in quantum information theory and quantum opti...