We describe in detail a general system\u2013bath strategy for investigating the quantum behavior of small systems interacting with complex environments. In this approach, a simplified heat bath is used as a surrogate for realistic environments, and explicit, unitary quantum simulations of the \u201cuniverse\u201d (the system plus the bath) are performed by means of high-dimensional wave-packet techniques. In this chapter, we describe the underlying Hamiltonians and the related reduced dynamical descriptions, show how to recast real-world problems into this form, introduce some of the methods currently used to deal with high-dimensional quantum dynamics, and present the results of this strategy when applied to numerous problems of physicoche...
This thesis describes two studies of the dynamics of many-body quantum systems with extensive numeri...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
Having a broad range of methods available for implementing unitary operations is crucial for quantum...
So-called system-bath dynamical problems are ubiquitous in chemical physics. They represent one of t...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
We present a quantum algorithm to simulate general finite dimensional Lindblad master equations with...
We present an optimized hierarchical equations of motion theory for quantum dissipation in multiple ...
Open quantum systems have drawn attention over decades due to its applicability in the foundation of...
We rigorously investigate the quantum non-Markovian dissipative dynamics of a system coupled to a ha...
Our starting point is a stochastic decomposition scheme to study dissipative dynamics of an open sys...
In this thesis, the effect of dissipation is investigated in driven models of interest for quantum a...
Quantum dissipation theory (QDT) plays a key role describing the reduced system dynamics under influ...
This thesis describes two studies of the dynamics of many-body quantum systems with extensive numeri...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
This thesis describes two studies of the dynamics of many-body quantum systems with extensive numeri...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
Having a broad range of methods available for implementing unitary operations is crucial for quantum...
So-called system-bath dynamical problems are ubiquitous in chemical physics. They represent one of t...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
We present a quantum algorithm to simulate general finite dimensional Lindblad master equations with...
We present an optimized hierarchical equations of motion theory for quantum dissipation in multiple ...
Open quantum systems have drawn attention over decades due to its applicability in the foundation of...
We rigorously investigate the quantum non-Markovian dissipative dynamics of a system coupled to a ha...
Our starting point is a stochastic decomposition scheme to study dissipative dynamics of an open sys...
In this thesis, the effect of dissipation is investigated in driven models of interest for quantum a...
Quantum dissipation theory (QDT) plays a key role describing the reduced system dynamics under influ...
This thesis describes two studies of the dynamics of many-body quantum systems with extensive numeri...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
This thesis describes two studies of the dynamics of many-body quantum systems with extensive numeri...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
Having a broad range of methods available for implementing unitary operations is crucial for quantum...