
Thermal stability analysis of polarization-maintaining photonic crystal
The research on polarization-maintaining photonic crystal fibers lays a theoretical foundation for developing new optical fiber and sensing systems with high stability and high output
Study on temperature-dependent performance of polarization
At the same time, the relationship between extinction ratio and temperature of spun high-birefringence fibers used as sensing fiber ring in FOCT is also tested, which provides experimental support for
Dynamic polarization response of polarization-maintaining fibers by
We report a periodic thermal cycling method to investigate the dynamic response of the polarization of a laser propagating through polarization-maintaining (PM) optical fiber, driven by
Temperature dependence of birefringence in polarization-maintaining
In this paper, the temperature dependence of birefringence in polarization maintaining photonic crystal fibres (PM-PCFs) is investigated theoretically and experimentally.
Phase response of polarization-maintaining optical fiber to temperature
This paper deals with the phase shift development in the polarization-maintaining fiber owing to different temperatures of an applied defined body, where both polarization axes are...
Polarization-maintaining Fibers – PM fiber, HIBI fiber, polarization
Polarization-maintaining fibers are applied in devices where the polarization state cannot be allowed to drift, e.g. as a result of temperature changes. Examples are fiber interferometers, fiber-optic
The impact of polarization‐maintaining and multimode
In this paper, a fibre Sagnac loop mirror constructed by non-circled SMPMS fibre structures is proposed, and its temperature and strain
Thermal Sensitivity of Birefringence in Polarization-Maintaining
Here, we systematically investigated the structural thermal deformation and the resulting birefringence variation in typical PM hollow-core photonic bandgap fibers (HC-PBGFs) for FOG
The impact of polarization‐maintaining and multimode fibre lengths on
In this paper, a fibre Sagnac loop mirror constructed by non-circled SMPMS fibre structures is proposed, and its temperature and strain characteristics depending on PMF and MMF
Temperature Stability of a Hybrid Polarization
A fiber ring resonator (FRR) constructed using a Panda polarization-maintaining fiber does not effectively solve the problem of temperature-related
Fabrication of biaxial polarization-maintaining optical fiber with
As a new type of polarization-maintaining (PM) fiber, a biaxial PM fiber was fabricated over 30 dB of high polarization extinction ratio (PER) values among two orthogonal axes over a fiber
(PDF) Fabrication of Biaxial Polarization-Maintaining
The polarization-maintaining performance of the traditional Panda-type polarization-maintaining fiber (PMF) coil is significantly affected by winding stress
Polarization-maintenance limits in polarization-maintaining fibers and
Intrinsic, extrinsic, and measurement-related polarization-maintenance transmission performance limitations are determined on short fiber lengths of hybrid-rectangular polarization-maintaining fibers
Dynamic polarization response of polarization-maintaining fibers by
Polarization-maintaining (PM) optical fibers are widely used in various applications, such as fiber-optic sensing, fiber-optic gyroscopes, fiber-optic interferometry, quantum information
Performance comparison and mechanism of electron irradiation
Using electron irradiation with energy of 160 keV and 1 MeV, it is found that the irradiation induced loss of “Capsule” type polarization maintaining silica optical fiber is significantly more serious
The impact of polarization‐maintaining and multimode
In these schemes, fibre loop mirrors are constructed with single-mode-multimode-polarization-maintaining-multimode-single-mode optical fibre
Fiber Coupling to Polarization-Maintaining Fibers and Collimation
Polarization-maintaining single- mode fibers (PM fibers) are rotation-ally non-symmetric because of inte-grated stress elements, for example, that break the degeneracy of the two principle states of
Phase response of polarization-maintaining optical fiber
The temperature response of polarization-maintaining fiber and the effects of heat transfer on the phase shift variation of polarization-maintaining
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