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25.4mm Dia., 6.35mm Thick, Fused Silica 800nm Ti:Sapphire Mirror, 0-45 Deg AOI

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Specifications

概況

Type:
Ti:Sapphire Laser Mirror

物理和機械特性

Diameter (mm):
25.40 +0.00/-0.10
Clear Aperture CA (mm):
22.86
Parallelism (arcmin):
<3
Thickness (mm):
6.35 ±0.20
Edges:
Fine Ground

光學特性

Design Wavelength DWL (nm):
800
Wavelength Range (nm):
780 - 820
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Fused Silica (Corning 7980)
Angle of Incidence (°):
0-45
Coating:
Laser Mirror (800nm)
Coating Specification:
Rabs S & P >99.80% @ 800nm @ 0-45° AOI
Surface Flatness (P-V):
λ/10
Surface Quality:
10-5

Regulatory Compliance

RoHS:
Certificate of Conformance:

產品概覽

  • Ti:Sapphire 雷射基頻與倍頻的反射率>99.8%
  • 10-5的表面質量,可在雷射應用中有效減少散射。
  • 高雷射損傷閾值

TECHSPEC® Ti:Sapphire 雷射光反射鏡在入射角為45°以及0-45°時,對於 Ti:Sapphire 雷射基頻與倍頻入射光的反射率>99.8%。這些雷射光反射鏡採用熔融石英基材設計,具有出色的熱穩定性,鍍膜波長分別為 800nm、400nm、266nm,分別為基波、二次諧波和三次諧波。為最大限度減少散射,這些反射鏡具有 10-5 的高表面質量和 λ/10 的表面平整度。TECHSPEC® Ti:Sapphire雷射光反射鏡是採用Ti:Sapphire雷射應用的理想選擇,如多光子成像、超快光譜分析和冷微加工等。

資源

Filter

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Effects of Laser Mirror Surface Flatness

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Optotune Beam Steering Mirrors Demonstration Video

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Beam Conditioning Optics for UV, IR, and Broadband Lasers

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超快高色散反射鏡對於超快雷射應用中的脈衝壓縮和色散補償、提高系統性能至關重要。

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Eccentricity

Coating Impact on Flatness Calculator

Free-Space Optical Communication

Free-space optical (FSO) communications wirelessly transmit data through the air using lasers. FSO promises to revolutionize broadband internet access.

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雷射直徑對光學元件的雷射誘導損傷 (LIDT) 影響很大,因為光束直徑直接影響雷射損傷的機率。

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Join Chris Williams as he briefly explains the basics of how to align a laser system onto a target.

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Dielectric Coating

First Surface Mirror

Ion-Beam Sputtering (IBS)

Reflection

Specular

A Guide to (Not Over) Specifying Losses in Laser Optics

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Free-space optical (FSO) communications transmit information wirelessly through the air using lasers with improved bandwidth. Learn more!

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Top Trends of 2022 – TRENDING IN OPTICS: EPISODE 8

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Is it possible to directly measure absorption or scatter?

Parity

Development of a Robust Laser Damage Threshold Testbed

Development of US national laser damage standard: 2020 status

不同類型的 LDT 規格

光學器件的雷射誘導損傷閾值(LIDT)是一個受缺陷密度、測試方法和雷射波動影響的統計值。

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了解表面品質規格

光學元件的表面品質取決於其表面的散射,這在雷射光學應用中尤其重要。

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Parallelism

Seamed Edge

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並非所有光學元件都經過雷射誘導損傷閾值 (LIDT) 測試,且測試方法不同,導致 LIDT 規範類型不同。

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了解確保雷射應用成功必須考慮的關鍵參數。將為這些參數建立通用術語。

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雷射光學度量

計量對於確保光學元件始終滿足其所需的規格至關重要,尤其是在雷射應用中。

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Clear Aperture (CA)

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Laser Damage Threshold

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進一步瞭解愛特蒙特光學® 使用的度量技術,協助保證所有光學元件及組件的優異品質。

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Surface Quality

 
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