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akaturk Akademik ölçüm

Makale detayı · 2024

Laser nanofabrication inside silicon with spatial beam modulation and anisotropic seeding

Nature Communications

YÖKSİS OpenAlex Açık erişim · gold SJR Q1 JCR Q1 Atıf 42 Üst %10 Yüzdelik 96.4% FWCI 4.92
Yıl
2024
ISSN
2041-1723
Tür
article

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  • OpenAlex OpenAlex zenginleştirmesi (özet, atıf, konular)

Özet

İngilizce (OpenAlex)

Nanofabrication in silicon, arguably the most important material for modern technology, has been limited exclusively to its surface. Existing lithography methods cannot penetrate the wafer surface without altering it, whereas emerging laser-based subsurface or in-chip fabrication remains at greater than 1 μm resolution. In addition, available methods do not allow positioning or modulation with sub-micron precision deep inside the wafer. The fundamental difficulty of breaking these dimensional barriers is two-fold, i.e., complex nonlinear effects inside the wafer and the inherent diffraction limit for laser light. Here, we overcome these challenges by exploiting spatially-modulated laser beams and anisotropic feedback from preformed subsurface structures, to establish controlled nanofabrication capability inside silicon. We demonstrate buried nanostructures of feature sizes down to 100 ± 20 nm, with subwavelength and multi-dimensional control; thereby improving the state-of-the-art by an order-of-magnitude. In order to showcase the emerging capabilities, we fabricate nanophotonics elements deep inside Si, exemplified by nanogratings with record diffraction efficiency and spectral control. The reported advance is an important step towards 3D nanophotonics systems, micro/nanofluidics, and 3D electronic-photonic integrated systems.

Konular

  • Photonic and Optical Devices
  • Laser Material Processing Techniques
  • Nonlinear Optical Materials Studies

Birincil konu Photonic and Optical Devices

Yazarlar

  1. Rana Asgari Sabet
  2. Aqiq Ishraq
  3. Alperen Saltik
  4. Mehmet Bütün
  5. ONUR TOKEL İHSAN DOĞRAMACI BİLKENT ÜNİVERSİTESİ