We propose a general scheme for dissipatively preparing arbitrary pure quantum states on a multipartite qubit register in a finite number of basic control blocks. Our “splitting-subspace” approach relies on control resources that are available in a number of scalable quantum technologies (complete unitary control on the target system, an ancillary resettable qubit and controlled-not gates between the target and the ancilla), and can be seen as a “quantum-controller” implementation of a sequence of classical feedback loops. We show how a large degree of flexibility exists in engineering the required conditional operations, and make explicit contact with a stabilization protocol used for dissipative quantum state preparation and entanglement ...
The strongest adversary in quantum information science is decoherence, which arises owing to the cou...
Entangled states are a key resource in fundamental quantum physics, quantum cryptography, and quantu...
Based on recent work on the asymptotic behavior of controlled quantum Markovian dynamics, we show th...
We propose a general scheme for dissipatively preparing arbitrary pure quantum states on a multipart...
We propose a general scheme for dissipatively prepar-ing arbitrary pure quantum states on a multipar...
In this technical note an extended scalability condition is proposed to achieve the ground-state sta...
We characterize time-independent Markovian dynamics that drive a finite-dimensional multipartite qua...
In this thesis, we develop a perturbative approximation for the solution of Lindblad master equation...
We propose a new method for pure-state and subspace preparation in quantum systems, which employs th...
Session J4: Non-equilibrium Dynamics with Quantum Gases: Abstract ID: BAPS.2012.MAR.J4.6Various diss...
This thesis tackles the problem of preparing and stabilizing highly non classical states of quantum ...
A protocol is discussed for preparing a spin chain in a generic many-body state in the asymptotic li...
This dissertation is a study of several aspects of discrete time quantum control. After reviewing th...
Global asymptotic stabilization of quantum pure states is relevant to chemical process control, quan...
We demonstrate and contrast two approaches to the stabilization of qubit entanglement by feedback. O...
The strongest adversary in quantum information science is decoherence, which arises owing to the cou...
Entangled states are a key resource in fundamental quantum physics, quantum cryptography, and quantu...
Based on recent work on the asymptotic behavior of controlled quantum Markovian dynamics, we show th...
We propose a general scheme for dissipatively preparing arbitrary pure quantum states on a multipart...
We propose a general scheme for dissipatively prepar-ing arbitrary pure quantum states on a multipar...
In this technical note an extended scalability condition is proposed to achieve the ground-state sta...
We characterize time-independent Markovian dynamics that drive a finite-dimensional multipartite qua...
In this thesis, we develop a perturbative approximation for the solution of Lindblad master equation...
We propose a new method for pure-state and subspace preparation in quantum systems, which employs th...
Session J4: Non-equilibrium Dynamics with Quantum Gases: Abstract ID: BAPS.2012.MAR.J4.6Various diss...
This thesis tackles the problem of preparing and stabilizing highly non classical states of quantum ...
A protocol is discussed for preparing a spin chain in a generic many-body state in the asymptotic li...
This dissertation is a study of several aspects of discrete time quantum control. After reviewing th...
Global asymptotic stabilization of quantum pure states is relevant to chemical process control, quan...
We demonstrate and contrast two approaches to the stabilization of qubit entanglement by feedback. O...
The strongest adversary in quantum information science is decoherence, which arises owing to the cou...
Entangled states are a key resource in fundamental quantum physics, quantum cryptography, and quantu...
Based on recent work on the asymptotic behavior of controlled quantum Markovian dynamics, we show th...