Simulating charge and energy transfer in extended molecular networks requires an effective model to include the environment because it significantly affects the quantum dynamics. A prototypical effect known as environment-assisted quantum transport (ENAQT) consists in the enhancement of the transfer efficiency by the interaction with an environment. A simple description of this phenomenon is obtained by a quantum master equation describing a quantum walk over the molecular network in the presence of inter-site decoherence. We consider the problem of simulating the dynamics underlying ENAQT in a digital quantum computer. Two different quantum algorithms are introduced, the first one based on stochastic Hamiltonians and the second one based o...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...
Recent theoretical studies show that decoherence process can enhance transport efficiency in quantum...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
Dissipative collective effects are ubiquitous in quantum physics, and their relevance ranges from th...
Dissipative collective effects are ubiquitous in quantum physics and their relevance ranges from the...
Modeling the dynamics of a quantum system connected to the environment is critical for advancing our...
Quantum computers have recently become available as noisy intermediate-scale quantum devices. Alread...
Modeling the dynamics of a quantum system connected to the environment is critical for advancing our...
This thesis contains four projects: entanglement and quantum phase transition in one-dimensional qua...
Classical algorithms that simulate the electronic and vibrational structure of atoms and molecules a...
The simulation of complex quantum systems on a quantum computer is studied, taking the kicked Harper...
Engineering, controlling, and simulating quantum dynamics is a strenuous task. However, these techni...
One of the most exciting potential applications of a quantum computer is the abilityto efficiently s...
Current quantum computers are characterized as having the order of 5-100 qubits, with limited connec...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...
Recent theoretical studies show that decoherence process can enhance transport efficiency in quantum...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
Dissipative collective effects are ubiquitous in quantum physics, and their relevance ranges from th...
Dissipative collective effects are ubiquitous in quantum physics and their relevance ranges from the...
Modeling the dynamics of a quantum system connected to the environment is critical for advancing our...
Quantum computers have recently become available as noisy intermediate-scale quantum devices. Alread...
Modeling the dynamics of a quantum system connected to the environment is critical for advancing our...
This thesis contains four projects: entanglement and quantum phase transition in one-dimensional qua...
Classical algorithms that simulate the electronic and vibrational structure of atoms and molecules a...
The simulation of complex quantum systems on a quantum computer is studied, taking the kicked Harper...
Engineering, controlling, and simulating quantum dynamics is a strenuous task. However, these techni...
One of the most exciting potential applications of a quantum computer is the abilityto efficiently s...
Current quantum computers are characterized as having the order of 5-100 qubits, with limited connec...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...
Recent theoretical studies show that decoherence process can enhance transport efficiency in quantum...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...