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11 x 11mm, 1060nm, Corning Polarcor™ Glass Polarizer

Corning Polarcor™ Glass Polarizers

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Specifications

物理和機械特性

Length (mm):
11.00
Dimensions (mm):
11.0 x 11.0
Thickness (mm):
0.50 ±0.05
Dimensional Tolerance (mm):
±0.1
Width (mm):
11.00
Knoop Hardness (kg/mm2):
480
Young's Modulus (GPa):
58.605
Poisson's Ratio:
0.21

光學特性

Angle of Incidence (°):
0 ±5
Coating:
BBAR (960-1160nm)
Design Wavelength DWL (nm):
1060
Extinction Ratio:
>10,000:1
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Borosilicate Glass Containing Elongated Silver Crystals
Minimum Transmission (%):
>95.7
Surface Quality:
40-20
Coating Specification:
Ravg <0.4% @ 960 - 1160m
Wavelength Range (nm):
960 - 1160
Index of Refraction (nd):
1.5123
Abbe Number (vd):
57.6

硬體與介面連接

Insertion Loss (dB):
<0.19

材料特性

Coefficient of Thermal Expansion CTE (10-6/°C):
6.5
Density (g/cm3):
2.412

Regulatory Compliance

RoHS 2015:
Reach 224:
Certificate of Conformance:

產品概覽

  • 在近紅外線具有高消光比及低插入損耗
  • 可抵抗承受化學、物理及熱損傷
  • 適合高功率應用使用
  • 提供各種標準尺寸和客製選項

Corning Polarcor™ 玻璃偏振器在近紅外線波長具有高消光比及低插入損耗。這類線性偏振器由延長銀晶體組成,於硼矽酸鹽玻璃基材內部對準,提供以共振吸收為基礎的偏振機構。這樣的偏振機構可讓不需要的偏振方向光線遭到吸收,確保消除雜散光。Corning Polarcor™ 玻璃偏振器可用於偏振光線、減少反射、加強影像對比、調節及控制光線強度,或是改善雜訊比。這類偏振器適合整合至依賴偏振的光學隔離器、光學調變器及其他以偏振為基礎的裝置,範圍涵蓋電信、醫療及國防產業。

資源

Filter

Introduction to Polarization

Is polarization a new topic for you? Learn about key terminology, types, and more information to help you understand polarization at Edmund Optics.

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Laser-Cut Polymer Polarizer and Retarder Quote Tool

Polymer Polarizers and Retarders

Polymer polarizers and retarders, consisting of sheets of polyvinyl alcohol and TAC cellulose triacetate, alter the polarization of light.

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Polarizer Selection Guide

Edmund Optics' Polarizer Selection Guide refines your search for a specific type of polarizer.

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Understanding Waveplates and Retarders

Waveplates (retarders) are different when used in polarized light than unpolarized light. Consider terminology, fabrication, or applications at Edmund Optics.

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How Do 3D Movies Work? Polarization

Optical Engineer Katie Schwertz explains how 3D movies work because of polarization in a kid-friendly way.

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Polarization Overview - Part 1: Polarization Basics

Polarizers are optical components designed to filter, modify, or analyze the various polarization states of light.

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Polarization Overview - Part 2: Waveplates & Retarders (Advanced)

Waveplates and retarders are optical components designed to transmit light while modifying its polarization state without attenuating, deviating, or displacing the beam.

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You offer many types of polarizers. What are some key benefits to help me decide which is best for my application?

Are the polarizers shipped with a protective film?

What is the difference between s- and p-polarization states?

What are the meanings for the different terms used for polarizers?

How can I tell what the polarization axis is for a linear polarizer?

When you list the average transmission of a polarizer, what is the difference between single, parallel, and crossed?

I have a linear polarizer glass filter and would like to create circularly polarized light. What type of optics do I need for this?

What is the maximum amount of light a polarizer can transmit?

Does the circular polarizer material have to face a particular direction?

What is the fast and slow axis of a retarder and how do they differ?

How can I find the fast and slow axes of a retarder?

What is the difference between multiple and zero-order retarders and when should I pick one over the other?

How can I determine if a retarder is quarter or half wave?

Can I adapt a retarder for use with a specific wavelength other than the design wavelength?

What is the benefit of polymer retarders?

Analyzer

Birefringence

Circular Polarizer

Polarization

Polarizer

Polarizing Efficiency

P-Polarization

Retardance

Retarder (Waveplate)

S-Polarization

Unpolarized

Wire Grid Polarizer

Successful Light Polarization Techniques

Are you looking for a solution to common imaging problems? Discover different polarization techniques to improve your image at Edmund Optics.

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Polarization Directed Flat Lenses Product Review

Polarization Directed Flat Lenses, which are formed with polymerized liquid crystal thin-film, create a focal length that is dependent on polarization state.

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Polarizers Review

Polarizers are used in a wide range of imaging and research and development applications.

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Does the polarization of light change after reflecting off a mirror?

Do diffusers affect the polarization of light?

Does the polarization of light change when it passes through a beamsplitter?

I would like to split light from a circularly polarized laser source into two beams. What happens when it passes through a cube beamsplitter – both non-polarizing and polarizing?

Does light entering a multimode fiber undergo a polarization change during propagation through the fiber? If so, can the emerging light be linearly polarized by placing a polarizer at the fiber’s output end?

Why does the polarization of a laser matter?

The polarization state of a laser source is important for many different applications.

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Extinction Ratio

Non-Polarizing Beamsplitter

Polarizing Beamsplitter

Optical Microscopy Application: Differential Interference Contrast

Differential interference contrast (DIC) is one of the polarization techniques that can be used in optical microscopy. Learn about this technique at Edmund Optics.

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雷射偏振:偏振在雷射應用的重要性

了解雷射的偏振對於許多應用至關重要,因為偏振會影響反射率、聚焦光束和其他關鍵行為。

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