Experiments and theoretical analysis of influence of temperature on polarization mode dispersion (PMD) in single mode optical fibers and cables are presented. Forces generated by contracting buffer create optical birefringence and increase fiber PMD at low temperatures. Single mode fiber (SMF) in 0.9 mm polymeric tight-buffer can exhibit an extra component of PMD exceeding 0.3 ps/√km in such conditions. On the other hand, tight-buffered spun nonzero dispersion-shifted fibers (NZDSF) and optical units with stranded single mode fibers have showed good stability of PMD over wide range of temperatures. This is due to presence of circular strain in the core, blocking accumulation of mechanically induced birefringence
The polarization properties of single-mode optical fibers are easily modified by environmental facto...
Experimental results are presented for the dependence of the dispersion and the birefringence of a h...
This article describes experimental tests to determine PM fibers Panda style responses to a thermal ...
This paper presents results of laboratory tests investigating influence of temperature on polarizati...
In this dissertation, the PMD measurements of field and laboratory optical fibre will be discussed. ...
Polarization-Mode Dispersion (PMD) has the same effect on light signals in optical fibers as an...
This article describes experimental tests to determine PM fibers Panda style responses to a thermal...
Bacherol thesis describes the problems of polarization mode dispersion-PMD. Size of the delay PMD is...
The strain and temperature sensitivities of three common commercial high-birefringent polarization m...
The paper deals with the response of polarization maintaining (PM) fibers upon the variation of the ...
The paper deals with utilization of induced birefringence sensitivity to temperature field in birefr...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
We report experimental measurements of the strain and temperature sensitivity of the optical phase i...
The domain of optical telecommunication is characterized by an increasing demand for better transmis...
©2016 Optical Society of America. Polarization mode coupling (PMC) and related effects from writing ...
The polarization properties of single-mode optical fibers are easily modified by environmental facto...
Experimental results are presented for the dependence of the dispersion and the birefringence of a h...
This article describes experimental tests to determine PM fibers Panda style responses to a thermal ...
This paper presents results of laboratory tests investigating influence of temperature on polarizati...
In this dissertation, the PMD measurements of field and laboratory optical fibre will be discussed. ...
Polarization-Mode Dispersion (PMD) has the same effect on light signals in optical fibers as an...
This article describes experimental tests to determine PM fibers Panda style responses to a thermal...
Bacherol thesis describes the problems of polarization mode dispersion-PMD. Size of the delay PMD is...
The strain and temperature sensitivities of three common commercial high-birefringent polarization m...
The paper deals with the response of polarization maintaining (PM) fibers upon the variation of the ...
The paper deals with utilization of induced birefringence sensitivity to temperature field in birefr...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
We report experimental measurements of the strain and temperature sensitivity of the optical phase i...
The domain of optical telecommunication is characterized by an increasing demand for better transmis...
©2016 Optical Society of America. Polarization mode coupling (PMC) and related effects from writing ...
The polarization properties of single-mode optical fibers are easily modified by environmental facto...
Experimental results are presented for the dependence of the dispersion and the birefringence of a h...
This article describes experimental tests to determine PM fibers Panda style responses to a thermal ...