Development of Extreme Ultraviolet Pellicles Based on Yttrium Core with Amorphous Carbon Capping Layer

  • Seong, Kihun
  • Kim, Hye-Young
  • Kim, Yongkyung
  • Kim, Hyeongkeun
  • Kim, Won Jin
  • ... Ahn, Jinho
  • 외 3명
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초록

Yttrium offers exceptional intrinsic extreme ultraviolet (EUV) transmittance and emissivity for next-generation pellicles. However, its severe oxidation susceptibility limits its practical implementation. In this study, we demonstrate that amorphous carbon (a-C) capping layers effectively preserve metallic Y, whereas plasma-enhanced atomic-layer-deposited SiNx causes catastrophic oxidation. Our standalone a-C/Y/a-C film achieves 86.8% EUV transmittance and exhibits remarkable thermal stability, maintaining approximate to 400 degrees C peak temperature for over 1000 cycles under 1 W/cm(2) absorbed power. Transmission electron microscopy analysis of the freestanding membrane revealed substantial fluorine penetration throughout the Y core during back-etching, driven by a strong Y-F thermodynamic affinity. Despite the compositional change, the film retained its robust thermal performance. These results establish a-C-capped Y as a viable high-powered EUV pellicle, demonstrating that strategic material design can overcome intrinsic oxidation challenges while delivering the optical and thermal properties required for advanced lithography.

키워드

EUV pelliclesEUV transmittanceY core pelliclesY oxidationAmorphous carbon capping layersTHIN-FILMSSPECTROSCOPYDEPOSITIONSTATE
제목
Development of Extreme Ultraviolet Pellicles Based on Yttrium Core with Amorphous Carbon Capping Layer
저자
Seong, KihunKim, Hye-YoungKim, YongkyungKim, HyeongkeunKim, Won JinMoon, SeungchanAhn, JinhoKim, Seul-GiKim, Hyun-Mi
DOI
10.1007/s13391-026-00630-x
발행일
2026-07
유형
Article; Early Access
저널명
Electronic Materials Letters
22
4
페이지
381 ~ 392