In this technical note an extended scalability condition is proposed to achieve the ground-state stability for a class of multipartite quantum systems which may involve two-body interactions, and an explicit procedure to construct the dissipation control is presented. Moreover, we show that dissipation control can be used for automatic error correction in addition to stabilization. We demonstrate the stabilization and error correction of three-qubit repetition code states using dissipation control
Feedback Based On Multi-Qubit Measurements, Multiple-Particle Interference And Quantum Error Correct...
This thesis tackles the problem of preparing and stabilizing highly non classical states of quantum ...
The construction of large, coherent quantum systems necessary for quantum computation remains an ent...
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...
this paper we address the last remaining theoretical obstacle to such a construction, namely, the pr...
We study attendant properties of the following system: Error Correcting Codes In Quantum Theory, Sch...
In many proposed architectures for quantum computing the physics of the system prevent qubits from b...
The field of experimental quantum information has made significant progress towards useful computati...
AbstractIn many proposed architectures for quantum computing the physics of the system prevent qubit...
This is a brief description of how to protect quantum states from dissipation and decoherence that a...
In many proposed architectures for quantum computing the physics of the system prevent qubits from b...
The strongest adversary in quantum information science is decoherence, which arises owing to the cou...
Criteria are given by which dissipative evolution can transfer populations and coherences between qu...
We address the standard quantum error correction using the three-qubit bit-flip code, yet in continu...
Feedback Based On Multi-Qubit Measurements, Multiple-Particle Interference And Quantum Error Correct...
This thesis tackles the problem of preparing and stabilizing highly non classical states of quantum ...
The construction of large, coherent quantum systems necessary for quantum computation remains an ent...
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...
this paper we address the last remaining theoretical obstacle to such a construction, namely, the pr...
We study attendant properties of the following system: Error Correcting Codes In Quantum Theory, Sch...
In many proposed architectures for quantum computing the physics of the system prevent qubits from b...
The field of experimental quantum information has made significant progress towards useful computati...
AbstractIn many proposed architectures for quantum computing the physics of the system prevent qubit...
This is a brief description of how to protect quantum states from dissipation and decoherence that a...
In many proposed architectures for quantum computing the physics of the system prevent qubits from b...
The strongest adversary in quantum information science is decoherence, which arises owing to the cou...
Criteria are given by which dissipative evolution can transfer populations and coherences between qu...
We address the standard quantum error correction using the three-qubit bit-flip code, yet in continu...
Feedback Based On Multi-Qubit Measurements, Multiple-Particle Interference And Quantum Error Correct...
This thesis tackles the problem of preparing and stabilizing highly non classical states of quantum ...
The construction of large, coherent quantum systems necessary for quantum computation remains an ent...