Recently a scheme has been proposed for constructing quantum error-correcting codes that embed a finite-dimensional code space in the infinite-dimensional Hilbert space of a system described by continuous quantum variables. One of the difficult steps in this scheme is the preparation of the encoded states. We show how these states can be generated by coupling a continuous quantum variable to a single qubit. An ion trap quantum computer provides a natural setting for a continuous system coupled to a qubit. We discuss how encoded states may be generated in an ion trap
A quantum-convolutional code was introduced recently as an alternative way to protect vital quantum ...
In order to use quantum error-correcting codes to improve the performance of a quantum computer, it ...
We address the problems of constructing quantum convolutional codes (QCCs) and of encoding them. The...
Recently a scheme has been proposed for constructing quantum error-correcting codes that embed a fin...
Quantum error-correcting codes are constructed that embed a finite-dimensional code space in the inf...
We propose a new approach to study the evolution of a quantum state that is encoded in a system whic...
Recently it has been proposed to construct quantum error-correcting codes that embed a finite-dimens...
v2, typos correctedWe propose to use a large cloud of cold trapped ions as a medium for quantum opti...
By encoding a qudit in a harmonic oscillator and investigating the d --> infinity limit, we give an ...
We show that quantum feedback control can be used as a quantum error correction process for errors i...
We show that quantum feedback control can be used as a quantum error correction process for errors i...
We describe a protocol for continuously protecting unknown quantum states from decoherence that inco...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, February, 2021Cataloged ...
After a brief introduction to both quantum computation and quantum error correction, we show how to ...
Quantum error correction codes were introduced as a means to protect quantum information from decohe...
A quantum-convolutional code was introduced recently as an alternative way to protect vital quantum ...
In order to use quantum error-correcting codes to improve the performance of a quantum computer, it ...
We address the problems of constructing quantum convolutional codes (QCCs) and of encoding them. The...
Recently a scheme has been proposed for constructing quantum error-correcting codes that embed a fin...
Quantum error-correcting codes are constructed that embed a finite-dimensional code space in the inf...
We propose a new approach to study the evolution of a quantum state that is encoded in a system whic...
Recently it has been proposed to construct quantum error-correcting codes that embed a finite-dimens...
v2, typos correctedWe propose to use a large cloud of cold trapped ions as a medium for quantum opti...
By encoding a qudit in a harmonic oscillator and investigating the d --> infinity limit, we give an ...
We show that quantum feedback control can be used as a quantum error correction process for errors i...
We show that quantum feedback control can be used as a quantum error correction process for errors i...
We describe a protocol for continuously protecting unknown quantum states from decoherence that inco...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, February, 2021Cataloged ...
After a brief introduction to both quantum computation and quantum error correction, we show how to ...
Quantum error correction codes were introduced as a means to protect quantum information from decohe...
A quantum-convolutional code was introduced recently as an alternative way to protect vital quantum ...
In order to use quantum error-correcting codes to improve the performance of a quantum computer, it ...
We address the problems of constructing quantum convolutional codes (QCCs) and of encoding them. The...