Quantum phase transitions are usually studied in terms of Hermitian Hamiltonians. However, cold-atom experiments are intrinsically non-Hermitian because of spontaneous decay. Here, we show that non-Hermitian systems exhibit quantum phase transitions that are beyond the paradigm of Hermitian physics. We consider the non-Hermitian XY model, which can be implemented using three-level atoms with spontaneous decay. We exactly solve the model in one dimension and show that there is a quantum phase transition from short-range order to quasi-long-range order despite the absence of a continuous symmetry in the Hamiltonian. The ordered phase has a frustrated spin pattern. The critical exponent ν can be 1 or 1/2. Our results can be seen experimentally...
We overview the concept of dynamical phase transitions in isolated quantum systems quenched out of e...
Critical phase transitions contain a variety of deep and universal physics and are intimately tied t...
Quantum magnets represent an ideal playground for the controlled realization of novel quantum phases...
The dynamical quantum phase transitions (DQPTs) and the associated winding numbers have been extensi...
We show that weak measurement leads to unconventional quantum Zeno dynamics with Raman-like transiti...
While Hermiticity lies at the heart of quantum mechanics, recent experimental advances in controllin...
Numerous materials and physical systems exhibiting strong correlations show anomalous behavior at lo...
In closed quantum systems, a dynamical phase transition is identified by nonanalytic behaviors of th...
The dynamical quantum phase transitions (DQPTs) and the associated winding numbers have been extensi...
A paradigm model of modern atom optics is studied, strongly interacting ultracold bosons in an optic...
Abstract. We study nonequilibrium quantum phase transitions in XY spin 1/2 chain using the C ∗ algeb...
The discovery of topological phases in non-Hermitian open classical and quantum systems challenges o...
Recent studies have revealed intriguing similarities between the contribution of wormholes to the gr...
We present a theoretical study of quantum phases and quantum phase transitions occurring in non-Herm...
In this work we have studied the phases of the XY antiferromagnetic model in the checkerboard lattic...
We overview the concept of dynamical phase transitions in isolated quantum systems quenched out of e...
Critical phase transitions contain a variety of deep and universal physics and are intimately tied t...
Quantum magnets represent an ideal playground for the controlled realization of novel quantum phases...
The dynamical quantum phase transitions (DQPTs) and the associated winding numbers have been extensi...
We show that weak measurement leads to unconventional quantum Zeno dynamics with Raman-like transiti...
While Hermiticity lies at the heart of quantum mechanics, recent experimental advances in controllin...
Numerous materials and physical systems exhibiting strong correlations show anomalous behavior at lo...
In closed quantum systems, a dynamical phase transition is identified by nonanalytic behaviors of th...
The dynamical quantum phase transitions (DQPTs) and the associated winding numbers have been extensi...
A paradigm model of modern atom optics is studied, strongly interacting ultracold bosons in an optic...
Abstract. We study nonequilibrium quantum phase transitions in XY spin 1/2 chain using the C ∗ algeb...
The discovery of topological phases in non-Hermitian open classical and quantum systems challenges o...
Recent studies have revealed intriguing similarities between the contribution of wormholes to the gr...
We present a theoretical study of quantum phases and quantum phase transitions occurring in non-Herm...
In this work we have studied the phases of the XY antiferromagnetic model in the checkerboard lattic...
We overview the concept of dynamical phase transitions in isolated quantum systems quenched out of e...
Critical phase transitions contain a variety of deep and universal physics and are intimately tied t...
Quantum magnets represent an ideal playground for the controlled realization of novel quantum phases...