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Edmund Optics®

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 由我們 240 多位全球工程師創建且經過驗證的可信任技術資源庫。

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Search Results for: Low GDD Ultrafast Mirrors | 低 GDD 超快反射鏡 (165)

超快高色散反射鏡

Pulse Compression and Dispersion Compensation for Ultrafast Lasers

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使用高色散超快反射鏡提供色散補償

Learn how Highly-Dispersive Mirrors compensate for dispersion and compress pulse duration in ultrafast laser systems, which is critical for maximizing performance.

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盡可能減少超快系統的熱透鏡效應

Specialized coatings can minimize thermal lensing in ultrafast laser systems, which are particularly susceptible to detrimental thermal effects.

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高色散反射鏡

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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半導體超級反射鏡

Semiconductor supermirrors offer high reflectivity and outperform many IR mirrors on the market. Learn more about these new supermirrors at Edmund Optics.

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超快雷射的 LDT

超快雷射的短脈衝持續時間使其與光學元件的相互作用不同,從而影響光學元件的雷射損傷閾值。

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超快色散

超快雷射的短脈衝持續時間導致寬波長頻寬,使得超快系統特別容易受到色散和脈衝展寬的影響。

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高反射率反射鏡適合雷射應用

The industry standard method for quantifying reflectivity does not tell the whole story

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桿式反射鏡

Mounting flat mirrors by their edges in a kinematic mount imparts stress onto the mirror surface. This results in distortion and reduced quality of the reflected wavefront, which is especially noticeable when using high-quality mirrors. Stemmed mirrors, on the other hand, are mounted from a smaller diameter “stem” protruding from the back of the mirror, resulting in significantly reduced stress on the mirror surface, high stability, and cost reduction and can be used as a replacement for a more expensive and complex kinematic mount and a conventional mirror.

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適用於雷射應用的反射式光學產品

Beam Conditioning Optics for UV, IR, and Broadband Lasers

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E 系列動態光學反射鏡調整組件

E-Series Kinematic Optical Mounts provide high value and essential features for applications including lab use, prototyping, and system integration

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高反射率鍍膜

高反射率 (HR) 鍍膜應用於光學元件,以最大限度地減少反射雷射和其他光源時的損失。

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超薄高通及低通濾光片

Innovative ultra-thin filters provide flexibility, scratch resistance, and durability comparable to most hard oxide coatings. Learn more at Edmund Optics.

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抗反射 (AR) 鍍膜

抗反射 (AR) 鍍膜應用於光學元件,以提高吞吐量並減少背反射造成的傷害。

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Schwarz Mirrors

Schwarz Mirrors eliminate stray light using black, engineered fused silica substrates that maintain desired characteristics while absorbing unwanted light.

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雷射擴束鏡

雷射擴束鏡對於降低功率密度、最小化遠距離光束直徑以及最小化聚焦雷射光斑尺寸至關重要。

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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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反射鏡金屬鍍膜

Want to learn more about metallic mirror coatings? Find information about standard and custom metallic mirror coatings that are available at Edmund Optics.

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紫外雷射

A new generation of small, cost-effective, CW ultraviolet (UV) lasers allows more applications to move to UV wavelengths for increased power and precision.

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未來的顯微鏡物鏡

Advances in Microscopy Tackle the Challenges of the Future

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2µm 雷射

The unique absorption properties of 2µm lasers allow them to create small and precise cuts for medical and materials processing applications

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用於成像的液態鏡頭

Quickly Autofocus and Overcome Depth of Field Limitations

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Top 4 trends 2019

Advances in Smart Materials, Imaging, and Ultrafast Laser Optics

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下一代球面透鏡

Traditional spherical lenses are evolving due to the increasing demands of applications. Learn about the future of spherical lenses at Edmund Optics.

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鑽石車削離軸拋物面反射鏡的粗糙度

Learn about spatial frequency errors and surface roughness of Single Point Diamond Turned off-axis parabolic mirrors at Edmund Optics.

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雷射光束整型概觀

了解如何瀏覽用於塑造雷射光束的輻照度輪廓和相位的許多可用選項,以最大限度地提高雷射系統的性能。

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全面採用非球面透鏡

Time to Replace Spherical Elements with Aspheric Lenses

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超精密拋光光學元件

具有超低表面粗糙度的超精密拋光光學元件可最大限度地減少光學系統中的散射,這對於敏感雷射應用至關重要。

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電影鏡頭、串流時代及非球面透鏡

Cinema lenses designed to create content tailored for online streaming utilize aspheres to shoot with a shallow depth of field while maintaining quality.

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雷射系統關鍵參數

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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