Suppressing decoherence is one of the most challenging problems in the control of quantum dynamical systems. Dynamical decoupling is an open-loop decoherence control technique based on high-frequency and high-amplitude periodic controls. Here, we reformulate the effects of the basic strategy in terms of linear, symmetric matrix equations. Such a reformulation proves to be useful both in the analysis and in the synthesis of the needed unitary control actions. A general framework is provided, and simple, but significant, particular cases are studied in detail
Synthesizing an effective identity evolution in a target system subjected to unwanted unitary or non...
For finite-dimensional quantum systems, such as qubits, a well established strategy to protect such ...
Quantum feedback is assuming increasingly important role in quantum control and quantum information ...
Suppressing decoherence is one of the most challenging problems in the control of quantum dynamical ...
Suppressing decoherence is one of the most challenging problems in the control of quantum dyamical s...
In the field of quantum information, a major challenge is to protect and shield quantum systems from...
We find the conditions for one quantum system to function as a classical controller of another quant...
International audienceQuantum dynamical decoupling is a procedure to cancel the effective coupling b...
We analyze and compare three different strategies, all aimed at controlling and eventually halting d...
We revisit the method of dynamical decoupling via open-loop control for protecting quantum systems a...
Introduction In this chapter we continue the introduction to dynamical decoupling techniques for ope...
Abstract: We review our work concerning a method of decoherence control via concatenated dynamical d...
The need for strategies able to accurately manipulate quantum dynamics is ubiquitous in quantum cont...
We present a general control-theoretic framework for constructing and analyzing random decoupling sc...
We propose a novel dynamical method for beating decoherence and dissipation in open quantum system e...
Synthesizing an effective identity evolution in a target system subjected to unwanted unitary or non...
For finite-dimensional quantum systems, such as qubits, a well established strategy to protect such ...
Quantum feedback is assuming increasingly important role in quantum control and quantum information ...
Suppressing decoherence is one of the most challenging problems in the control of quantum dynamical ...
Suppressing decoherence is one of the most challenging problems in the control of quantum dyamical s...
In the field of quantum information, a major challenge is to protect and shield quantum systems from...
We find the conditions for one quantum system to function as a classical controller of another quant...
International audienceQuantum dynamical decoupling is a procedure to cancel the effective coupling b...
We analyze and compare three different strategies, all aimed at controlling and eventually halting d...
We revisit the method of dynamical decoupling via open-loop control for protecting quantum systems a...
Introduction In this chapter we continue the introduction to dynamical decoupling techniques for ope...
Abstract: We review our work concerning a method of decoherence control via concatenated dynamical d...
The need for strategies able to accurately manipulate quantum dynamics is ubiquitous in quantum cont...
We present a general control-theoretic framework for constructing and analyzing random decoupling sc...
We propose a novel dynamical method for beating decoherence and dissipation in open quantum system e...
Synthesizing an effective identity evolution in a target system subjected to unwanted unitary or non...
For finite-dimensional quantum systems, such as qubits, a well established strategy to protect such ...
Quantum feedback is assuming increasingly important role in quantum control and quantum information ...