What are Polarization-Maintaining (PM) Optical Fibers?
Polarization-Maintaining (PM) optical fiber is a type of single-mode optical fiber designed to maintain the polarization state of light propagating through them. When light travels through a standard optical fiber, environmental factors like temperature changes, bending, and twisting can cause the polarization state of the light to drift or become random. For some applications, this is undesirable, leading to the design and development of PM fibers.
PM fibers use anisotropic structures to create different refractive indices for the two orthogonal polarization modes, a mechanism known as form birefringence. The birefringence characteristic enables the fiber to maintain the polarization state of the light over long distances and despite external influences. These specialty fibers are often used when preserving the polarization state is critical, including fiber optic lasers, gyroscopes, LIDAR, quantum key distribution, and medical applications.
What Role Does Polarization Play in Light Transmission?
In fiber optic communication systems, the role of polarization is significant, as it can directly impact the performance and reliability of the system. Light transmitted through an optical fiber consists of an electric field oscillating in two orthogonal polarization modes, commonly called the x and y polarizations.
Polarization plays a role in light transmission in fiber optic communications systems in several ways:
To address these challenges, fiber optic communication systems employ polarization-maintaining fibers and various polarization management techniques. These measures help to minimize the impact of polarization-related effects on system performance and ensure the reliable transmission of data over long distances and at high data rates.
Polarization-Maintaining Optical Fiber Applications
After addressing the role and importance of polarization in light transmission, let’s take a look at a few applications where PM fibers are utilized:
Polarization-Maintaining Fiber Design & Construction
PM fiber is designed to prevent cross-coupling between orthogonal polarization modes (which typically would lead to degradation in polarization fidelity) and this is achieved by inducing a significant difference in propagation constant (also known as birefringence) between the orthogonal polarization modes.
Standard optical communication fibers are made to be circularly symmetric so that any light polarization can propagate with minimal change. They are also designed to minimize birefringence rather than create it, thus they do not maintain polarization over long distances well. On the other hand, PM fibers are constructed differently to create a significant amount of birefringence. Two common PM fiber designs are PANDA fiber and Bow-Tie fiber which are highlighted below:
The shared design approach between the two fiber types, stress-applying elements, leads to two propagation modes – a slow axis and a fast axis. An optical light signal launched into one of these axes will then maintain its polarization state throughout the length of the fiber. As a result, when PM fibers are connected or spliced together, the process requires a careful and accurate alignment of their polarization axes, which is covered in the next section.
Splicing Polarization-Maintaining Optical Fibers
While PM fibers transmit light signals similarly to other single-core optical fibers, splicing this fiber is more complex than splicing other standard communications fibers due to the need to align the fiber's polarization axes. This process requires specialized splicing equipment and a careful approach.
Unlike standard fibers, PM fibers have specific polarization axes that must be aligned before splicing. This requires a splicing machine equipped with a polarized light source and a polarization state analyzer, along with the necessary capability to align the axes.
PM fiber splicing is a specialized skill that requires additional training and advanced expertise. The PM splicing device's significantly higher cost coupled with the process's complexity typically requires an experienced technician or engineer compared to performing standard fiber splicing.
Leading Polarization-Maintaining Optical Fiber Types & Brands
Numerous entities produce high-quality PM fibers, and the list includes the largest global optical fiber manufacturers and several leading specialty optical fiber manufacturers. A few of these PM fiber manufacturers include:
Polarization Maintaining (PM) Optical Fiber Solutions from M2 Optics
When PM optical fibers or components are required for testing and networking applications, M2 Optics offers several customized PM fiber solutions, manufactured for your specific engineering needs. Whether your project demands precision lengths of bare PM fibers in efficient rack chassis or modules for exactly simulating a proposed network span, or you require a 1xN PM splitter for a connectivity demand, M2 has you covered.
For more information, pricing, and technical specifications, contact M2 Optics or visit the PM optical fiber solutions pages below: