Quantum criticality is a fundamental organizing principle for studying strongly correlated systems. Nevertheless, understanding quantum critical dynamics at nonzero temperatures is a major challenge of condensed-matter physics due to the intricate interplay between quantum and thermal fluctuations. The recent experiments with the quantum spin dimer material TlCuCl3 provide an unprecedented opportunity to test the theories of quantum criticality. We investigate the nonzero-temperature quantum critical spin dynamics by employing an effective O(N) field theory. The on-shell mass and the damping rate of quantum critical spin excitations as functions of temperature are calculated based on the renormalized coupling strength and are in excellent a...
Quantum effects dominate the behaviour of many diverse materials. Of particular current interest are...
Quantum phase transitions have attracted a great deal of interest in the study of condensed matter p...
We provide a method for constructing finite temperature states of one-dimensional spin chains displa...
A quantum critical point (QCP) is a singularity in the phase diagram arising because of quantum mech...
At quantum critical points (QCPs) quantum fluctuations exist on all length scales, frommicroscopic t...
This thesis is an exploration of critical phenomena in highly-correlated quantum matter. Specificall...
The physics of non-zero temperature dynamics and transport near quantum-critical points is discussed...
By means of nuclear spin-lattice relaxation rate 1/T1, we follow the spin dynamics as a function of ...
By means of nuclear spin-lattice relaxation rate 1/T1, we follow the spin dynamics as a function of ...
We provide a method for constructing finite temperature states of one-dimensional spin chains displa...
Conventional phase transitions, such as ice melting to water or ferromagnetic iron losing its strong...
Conventional phase transitions, such as ice melting to water or ferromagnetic iron losing its strong...
Quantum criticality arises from continuous changes of matter at absolute zero temperature. It can ha...
The concept of T = 0 quantum phase transi-tions has emerged as an overarching theme in strongly corr...
Quantum criticality arises from continuous changes of matter at absolute zero temperature. It can ha...
Quantum effects dominate the behaviour of many diverse materials. Of particular current interest are...
Quantum phase transitions have attracted a great deal of interest in the study of condensed matter p...
We provide a method for constructing finite temperature states of one-dimensional spin chains displa...
A quantum critical point (QCP) is a singularity in the phase diagram arising because of quantum mech...
At quantum critical points (QCPs) quantum fluctuations exist on all length scales, frommicroscopic t...
This thesis is an exploration of critical phenomena in highly-correlated quantum matter. Specificall...
The physics of non-zero temperature dynamics and transport near quantum-critical points is discussed...
By means of nuclear spin-lattice relaxation rate 1/T1, we follow the spin dynamics as a function of ...
By means of nuclear spin-lattice relaxation rate 1/T1, we follow the spin dynamics as a function of ...
We provide a method for constructing finite temperature states of one-dimensional spin chains displa...
Conventional phase transitions, such as ice melting to water or ferromagnetic iron losing its strong...
Conventional phase transitions, such as ice melting to water or ferromagnetic iron losing its strong...
Quantum criticality arises from continuous changes of matter at absolute zero temperature. It can ha...
The concept of T = 0 quantum phase transi-tions has emerged as an overarching theme in strongly corr...
Quantum criticality arises from continuous changes of matter at absolute zero temperature. It can ha...
Quantum effects dominate the behaviour of many diverse materials. Of particular current interest are...
Quantum phase transitions have attracted a great deal of interest in the study of condensed matter p...
We provide a method for constructing finite temperature states of one-dimensional spin chains displa...