We examine the adiabatic dynamics of a quantum system coupled to a noisy classical control field. A stochastic phase shift is shown to arise in the off-diagonal elements of the system's density matrix which can cause decoherence. We derive the condition for onset of decoherence, and identify the noise properties that drive decoherence. We show how this decoherence mechansim causes: (1) a dephasing of the observable consequences of the adiabatic geometric phase; and (2) the loss of computational efficiency of the Shor algorithm when run on a sufficiently noisy geometric quantum computer
textOpen quantum systems refer to systems that are affected by interaction with the environment. Th...
We investigate the effects of a generic noise source on a prototypical adiabatic quantum algorithm. ...
We study decoherence induced by stochastic squeezing control errors considering the particular imple...
We consider the effects of certain forms of decoherence applied to both adiabatic and non-adiabatic ...
We calculate the geometric phase associated with the evolution of a system subjected to decoherence ...
A quantum system interacting with its environment is subject to dephasing, which ultimately destroys...
International audienceWe study the defects in adiabatic control of a quantum system caused by the en...
We study the effect of Markovian environmental noise on the dynamics of a two-level quantum system w...
Based on a new type of two-level-system reservoir, we investigate the impact of dissipation on Berry...
Due to its geometric nature Berry's geometric phase exhibits stability to a great extent when expos...
We develop a theory of adiabatic response for open systems gov-erned by Lindblad evolutions. The the...
The geometric phase of a spin-1/2 system driven by one and two mode quantum fields subject to decohe...
This thesis is a summary of works concerning adiabatic control of open quantum systems. Three cases ...
This Thesis focuses on different aspects of quantum computation theory: adiabatic quantum algorithms...
Beyond the quantum Markov approximation, we calculate the geometric phase of a two-level system driv...
textOpen quantum systems refer to systems that are affected by interaction with the environment. Th...
We investigate the effects of a generic noise source on a prototypical adiabatic quantum algorithm. ...
We study decoherence induced by stochastic squeezing control errors considering the particular imple...
We consider the effects of certain forms of decoherence applied to both adiabatic and non-adiabatic ...
We calculate the geometric phase associated with the evolution of a system subjected to decoherence ...
A quantum system interacting with its environment is subject to dephasing, which ultimately destroys...
International audienceWe study the defects in adiabatic control of a quantum system caused by the en...
We study the effect of Markovian environmental noise on the dynamics of a two-level quantum system w...
Based on a new type of two-level-system reservoir, we investigate the impact of dissipation on Berry...
Due to its geometric nature Berry's geometric phase exhibits stability to a great extent when expos...
We develop a theory of adiabatic response for open systems gov-erned by Lindblad evolutions. The the...
The geometric phase of a spin-1/2 system driven by one and two mode quantum fields subject to decohe...
This thesis is a summary of works concerning adiabatic control of open quantum systems. Three cases ...
This Thesis focuses on different aspects of quantum computation theory: adiabatic quantum algorithms...
Beyond the quantum Markov approximation, we calculate the geometric phase of a two-level system driv...
textOpen quantum systems refer to systems that are affected by interaction with the environment. Th...
We investigate the effects of a generic noise source on a prototypical adiabatic quantum algorithm. ...
We study decoherence induced by stochastic squeezing control errors considering the particular imple...