A mathematical model for an optical-fiber communication channel is developed which results in an expression that calculates the throughput and loss of the corresponding link. The data are assumed to be transmitted by using of separate photons with different polarizations. The derived model also shows the dependency of data throughput with length of the channel and depolarization factor. It is observed that absorption of photons affects the throughput in a more intensive way in comparison with that of depolarization. Apart from that, the probability of depolarization and the absorption of radiated photons are obtained
We consider the communication channel given by a fiber optical transmission line. We develop a metho...
At the heart of quantum physics lies the principle of superposition, and at the heart of information...
We transmitted O-band heralded photons over 10 km of optical fiber in a proof-of-concept experiment ...
A mathematical model of communications channel that transfers data by means of separate photons havi...
In optical communication systems, photons are lost due to the attenuation of the transmission medium...
A mathematical model of the quantum communication channel has been built that contains a photon coun...
Thesis Supervisor: Jeffrey H. Shapiro Title: Julius A. Stratton Professor of Electric...
Recent experiments have demonstrated that the bit-error rate of an optical fiber communication syste...
We introduce a quantum channel describing photon losses depending on the degree of polarization mixe...
The chapter starts with a brief introduction of some basic concepts of information theory, introduci...
Quantum states of light are the obvious choice for communicating quantum information. To date, encod...
In the context of Quantum Communication theory, a lossy channel is a quantum channel that can descri...
Quantum key distribution is an application of quantum physics that allows two distant partners to se...
Expression for estimating the reliability of information during its transmission through quantum-cry...
Abstract—We systematically investigate the combined effect on the system performance in an optical f...
We consider the communication channel given by a fiber optical transmission line. We develop a metho...
At the heart of quantum physics lies the principle of superposition, and at the heart of information...
We transmitted O-band heralded photons over 10 km of optical fiber in a proof-of-concept experiment ...
A mathematical model of communications channel that transfers data by means of separate photons havi...
In optical communication systems, photons are lost due to the attenuation of the transmission medium...
A mathematical model of the quantum communication channel has been built that contains a photon coun...
Thesis Supervisor: Jeffrey H. Shapiro Title: Julius A. Stratton Professor of Electric...
Recent experiments have demonstrated that the bit-error rate of an optical fiber communication syste...
We introduce a quantum channel describing photon losses depending on the degree of polarization mixe...
The chapter starts with a brief introduction of some basic concepts of information theory, introduci...
Quantum states of light are the obvious choice for communicating quantum information. To date, encod...
In the context of Quantum Communication theory, a lossy channel is a quantum channel that can descri...
Quantum key distribution is an application of quantum physics that allows two distant partners to se...
Expression for estimating the reliability of information during its transmission through quantum-cry...
Abstract—We systematically investigate the combined effect on the system performance in an optical f...
We consider the communication channel given by a fiber optical transmission line. We develop a metho...
At the heart of quantum physics lies the principle of superposition, and at the heart of information...
We transmitted O-band heralded photons over 10 km of optical fiber in a proof-of-concept experiment ...