In optical communication systems, photons are lost due to the attenuation of the transmission medium. To efficiently implement quantum information protocols, we need to be able to precisely describe such processes. In this paper, we propose statistical methods to estimate the attenuation coefficient of the fiber link. By following the Beer–Lambert law, we utilize the properties of the exponential distribution to estimate the rate parameter based on observable data. In particular, we determine the explicit forms of unbiased estimators that are suitable for censored (truncated) sets of data. Moreover, we focus on minimum-variance methods that ensure a reliable estimation of the attenuation coefficient
We derive rigorously the Fokker-Planck equation that governs the statistics of soliton parameters in...
A new method for calculating the probability density function of the photon number propagating throu...
We study quantum correlation and interference of fiber-based telecom-band photon pairs with one phot...
A mathematical model for an optical-fiber communication channel is developed which results in an exp...
A mathematical model of communications channel that transfers data by means of separate photons havi...
We studied the quantum-statistical properties of pulse amplification in erbium-doped fiber amplifier...
A very simple model is found for phase insensitive laser amplification, Signal and noise along the a...
We calculate the exact statistical characterization of the accumulated polarization-dependent loss (...
We use white Gaussian noise as a test signal for single-mode and multimode transmission links and es...
We transmitted O-band heralded photons over 10 km of optical fiber in a proof-of-concept experiment ...
103 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1999.This thesis describes two met...
In this article, we investigate the efficiency of photonic state tomography in the presence of fiber...
In this dissertation we present theoretical and experimental investigation of the performance qualit...
This paper deals with different loss mechanisms within the single mode fiber (SMF) in optical fiber ...
We use white Gaussian noise as a test signal for single-mode and multimode transmission links and es...
We derive rigorously the Fokker-Planck equation that governs the statistics of soliton parameters in...
A new method for calculating the probability density function of the photon number propagating throu...
We study quantum correlation and interference of fiber-based telecom-band photon pairs with one phot...
A mathematical model for an optical-fiber communication channel is developed which results in an exp...
A mathematical model of communications channel that transfers data by means of separate photons havi...
We studied the quantum-statistical properties of pulse amplification in erbium-doped fiber amplifier...
A very simple model is found for phase insensitive laser amplification, Signal and noise along the a...
We calculate the exact statistical characterization of the accumulated polarization-dependent loss (...
We use white Gaussian noise as a test signal for single-mode and multimode transmission links and es...
We transmitted O-band heralded photons over 10 km of optical fiber in a proof-of-concept experiment ...
103 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1999.This thesis describes two met...
In this article, we investigate the efficiency of photonic state tomography in the presence of fiber...
In this dissertation we present theoretical and experimental investigation of the performance qualit...
This paper deals with different loss mechanisms within the single mode fiber (SMF) in optical fiber ...
We use white Gaussian noise as a test signal for single-mode and multimode transmission links and es...
We derive rigorously the Fokker-Planck equation that governs the statistics of soliton parameters in...
A new method for calculating the probability density function of the photon number propagating throu...
We study quantum correlation and interference of fiber-based telecom-band photon pairs with one phot...