In order to transfer quantum information, the use of spin chains has been proposed and their transfer characteristics have been analyzed. As one of the latter, the maximum of the transfer probability over sufficiently long time period is often considered important and some examples with high maximum values have been given. In these examples, the coupling between neighboring spins are tuned so as to attain high efficiency. In this article, we discuss the effect of noise on the values of coupling constant. As a result, we propose a system where the efficiency is high and also the effect of noise is small
Quantum state transfer in the presence of static disorder and noise is one of the main challenges in...
We study excitation transfer in a spin chain in presence of noise. To model noise, we assume that ea...
Describing the microscopic details of the interaction of magnets and spin-polarized currents is key ...
In order to transfer quantum information, the use of spin chains has been proposed and their transfe...
We consider quantum state transfer in a fully connected spin network, in which the results indicate ...
For the transfer of quantum information and the creation of entangled states, the application of tun...
The advent of Quantum Mechanics offered a new paradigm by which physicists were able to describe the...
We analyze the communication efficiency of quantum information transfer along unmodulated spin chain...
One of the central aims of quantum information theory is to exploit quantum mechanical phenomena suc...
We investigate the quantum-state transfer on spin-chain channels with random imperfections. Through...
One of the most basic tasks required for Quantum Information Technology is the ability to connect di...
The effect of noise on quantum teleportation of a spin-½ state using an entangled pair is studied. W...
We analyze the quality of the quantum information transmission along a correlated quantum channel by...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
The transmission of quantum states through spin chains is an important element in the implementation...
Quantum state transfer in the presence of static disorder and noise is one of the main challenges in...
We study excitation transfer in a spin chain in presence of noise. To model noise, we assume that ea...
Describing the microscopic details of the interaction of magnets and spin-polarized currents is key ...
In order to transfer quantum information, the use of spin chains has been proposed and their transfe...
We consider quantum state transfer in a fully connected spin network, in which the results indicate ...
For the transfer of quantum information and the creation of entangled states, the application of tun...
The advent of Quantum Mechanics offered a new paradigm by which physicists were able to describe the...
We analyze the communication efficiency of quantum information transfer along unmodulated spin chain...
One of the central aims of quantum information theory is to exploit quantum mechanical phenomena suc...
We investigate the quantum-state transfer on spin-chain channels with random imperfections. Through...
One of the most basic tasks required for Quantum Information Technology is the ability to connect di...
The effect of noise on quantum teleportation of a spin-½ state using an entangled pair is studied. W...
We analyze the quality of the quantum information transmission along a correlated quantum channel by...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
The transmission of quantum states through spin chains is an important element in the implementation...
Quantum state transfer in the presence of static disorder and noise is one of the main challenges in...
We study excitation transfer in a spin chain in presence of noise. To model noise, we assume that ea...
Describing the microscopic details of the interaction of magnets and spin-polarized currents is key ...