Rolling-Enabled Nonplanar Heterogeneous Integration for Polarization-Diverse Nanolasers on Silicon Photonics

  • Park, Byoung Jun; 
  • Shin, Dongmin; 
  • Yu, Aran; 
  • You, Byeong Uk; 
  • Lee, Jaeho; 
  • ... Kim, Myung-Ki; 
  • 외 3명
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초록

The continued advancement of silicon photonics increasingly relies on heterogeneous integration beyond monolithic fabrication, with transfer printing emerging as a powerful strategy for deterministic and high-precision assembly. However, existing transfer-printing strategies remain fundamentally limited to planar integration, restricting access to orientation-dependent optical functionalities. Here, we introduce a rolling-enabled transfer-printing strategy that enables deterministic nonplanar heterogeneous integration through precise mechanical orientation control at the nanoscale. By exploiting rolling-induced rotation during assembly, identical photonic-crystal nanobeam lasers are integrated onto silicon waveguides in planar or orthogonal configurations, enabling selective coupling to TE-like or TM-like modes without modifying the cavity design or epitaxial structure. Both configurations exhibit stable lasing and polarization-resolved coupling to silicon waveguides, in good agreement with numerical simulations, confirming that mechanical orientation alone can define optical functionality. By establishing orientation control as a new degree of freedom in heterogeneous integration, this work elevates transfer printing from a placement technique to a functionality-defining platform, opening new opportunities for compact, multifunctional, and reconfigurable photonic systems on silicon.

키워드

heterogeneous integration; nonplanar integration; photonic crystal nanolasers; silicon photonics; transfer printing; LASERS
제목
Rolling-Enabled Nonplanar Heterogeneous Integration for Polarization-Diverse Nanolasers on Silicon Photonics
저자
Park, Byoung Jun; Shin, Dongmin; Yu, Aran; You, Byeong Uk; Lee, Jaeho; Han, Sang-Wook; Jeon, Seung-Woo; Kang, Dongyeon Daniel; Kim, Myung-Ki
DOI
10.1002/nap2.70284
발행일
2026-09-05
유형
Article
저널명
Nanophotonics
권
15
호
17