• Infrared Technology
  • Vol. 46, Issue 6, 728 (2024)
Zheying XUE1,*, Changhu TAO2, Xin TAO3, and Kai ZHOU4
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
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    DOI: Cite this Article
    XUE Zheying, TAO Changhu, TAO Xin, ZHOU Kai. Infrared Dual-band Antireflection Coating for Automotive Chalcogenide Glass Elements[J]. Infrared Technology, 2024, 46(6): 728 Copy Citation Text show less
    References

    [4] Kim J I, Kim J K, Jang Y J. Stress relaxation through thermal gradient structure of tetrahedral amorphous carbon thin film deposited on Ge-Se-Sb-baesd chalcogenide glass[J]. Diamond and Related Materials, 2019,100: 107547.

    [8] Coating, single or multilayer, Interference: Durability Requirements: MILC-48497A [S]. [1980-09-08]

    [9] Willey R R. Predicting achievable design performance of broadband antireflection coating[J]. Applied Optics, 1993, 32(28): 5447-5451.

    [10] Moore T D, Jarvis J L. The peeling moment —a key rule for delamination resistance in IC assemblies[J]. Electron Packaging, 2004, 126(1): 106-109.

    [11] Stoney G G. The tension of metallic films deposited by electrolysis[J].Royal Society, 1909, 82: 172-175.

    [13] Chapman B N. Thin-film adhesion[J]. Journal of Vacuum Science & Technology, 1974, 11(1): 106.

    XUE Zheying, TAO Changhu, TAO Xin, ZHOU Kai. Infrared Dual-band Antireflection Coating for Automotive Chalcogenide Glass Elements[J]. Infrared Technology, 2024, 46(6): 728
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