Unit-efficiency homodyne detection of the resonance fluorescence of a two-level atom collapses the quantum state of the atom to a stochastically moving point on the Bloch sphere. Recently, Hofmann, Mahler, and Hess [Phys. Rev. A 57, 4877 (1998)] showed that by making part of the coherent driving proportional to the homodyne photocurrent one can stabilize the state to any point on the bottom-half of the sphere. Here we reanalyze their proposal using the technique of stochastic master equations, allowing their results to be generalized in two ways. First, we show that any point on the upper- or lower-half, but not the equator, of the sphere may be stabilized. Second, we consider nonunit-efficiency detection, and quantify the effectiveness of ...
The linear stochastic Schrodinger equation of a cavity mode subject to a homodyne measurement and to...
peer reviewedOptimal control theory is implemented with fully converged hierarchical equations of mo...
The ability to understand and control the internal state of the atom is essential to cold atom schem...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
We investigate the possibilities of preserving and manipulating the coherence of atomic two-level sy...
We show that the influence of quantum fluctuations in the electromagnetic field vacuum on a two leve...
We present a quantum theory of feedback in which the homodyne photocurrent alters the dynamics of th...
International audienceWe demonstrate how to use feedback to control the internal states of trapped c...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...
We consider the decoherence of a pseudo-spin ensemble under collective random rotations, and study, ...
Persistent control of a transmon qubit is performed by a feedback protocol based on continuous heter...
We present a protocol for deterministic generation of Fock states and Schroedinger cat-like states i...
Feedback control allows a wide range of systems to be stabilized to out-of-equilibrium states. In qu...
For two two-level atoms coupled to a single Bosonic mode that is driven and heavily damped, the stea...
The linear stochastic Schrodinger equation of a cavity mode subject to a homodyne measurement and to...
peer reviewedOptimal control theory is implemented with fully converged hierarchical equations of mo...
The ability to understand and control the internal state of the atom is essential to cold atom schem...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
We investigate the possibilities of preserving and manipulating the coherence of atomic two-level sy...
We show that the influence of quantum fluctuations in the electromagnetic field vacuum on a two leve...
We present a quantum theory of feedback in which the homodyne photocurrent alters the dynamics of th...
International audienceWe demonstrate how to use feedback to control the internal states of trapped c...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...
We consider the decoherence of a pseudo-spin ensemble under collective random rotations, and study, ...
Persistent control of a transmon qubit is performed by a feedback protocol based on continuous heter...
We present a protocol for deterministic generation of Fock states and Schroedinger cat-like states i...
Feedback control allows a wide range of systems to be stabilized to out-of-equilibrium states. In qu...
For two two-level atoms coupled to a single Bosonic mode that is driven and heavily damped, the stea...
The linear stochastic Schrodinger equation of a cavity mode subject to a homodyne measurement and to...
peer reviewedOptimal control theory is implemented with fully converged hierarchical equations of mo...
The ability to understand and control the internal state of the atom is essential to cold atom schem...