Method to make a single-step etch mask for 3D monolithic nanostructures
arXiv:1505.08035 · doi:10.1088/0957-4484/26/50/505302
Abstract
Current nanostructure fabrication by etching is usually limited to planar structures as they are defined by a planar mask. The realisation of three-dimensional (3D) nanostructures by etching requires technologies beyond planar masks. We present a method to fabricate a 3D mask that allows to etch three-dimensional monolithic nanostructures by using only CMOS-compatible processes. The mask is written in a hard-mask layer that is deposited on two adjacent inclined surfaces of a Si wafer. By projecting in single step two different 2D patterns within one 3D mask on the two inclined surfaces, the mutual alignment between the patterns is ensured. Thereby after the mask pattern is defined, the etching of deep pores in two oblique directions yields a three-dimensional structure in Si. As a proof of concept we demonstrate 3D mask fabrication for three-dimensional diamond-like photonic band gap crystals in silicon. The fabricated crystals reveal a broad stop gap in optical reflectivity measurements. We propose how 3D nanostructures with five different Bravais lattices can be realised, namely cubic, tetragonal, orthorhombic, monoclinic, and hexagonal, and demonstrate a mask for a 3D hexagonal crystal. We also demonstrate the mask for a diamond-structure crystal with a 3D array of cavities. In general, the 2D patterns for the different surfaces can be completely independent and still be in perfect mutual alignment. Indeed, we observe an alignment accuracy of better than 3.0 nm between the 2D mask patterns on the inclined surfaces, which permits one to etch well-defined monolithic 3D nanostructures.
18 pages, 10 figures
References in corpus (5)
- Two-Dimensional Material Nanophotonics
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- The role of fabrication deviations on the photonic band gap of 3D inverse woodpile nanostructures
- Design of a 3D photonic band gap cavity in a diamond-like inverse woodpile photonic crystal
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Cited by in corpus (12)
- Light in correlated disordered media
- Three-dimensional photonic band gap cavity with finite support: enhanced energy density and optical absorption
- Reflectivity calculated for a 3D silicon photonic band gap crystal with finite support
- X-ray imaging non-destructively identifies functional 3D photonic nanostructures
- "Cartesian light": unconventional propagation of light in a 3D superlattice of coupled cavities within a 3D photonic band gap
- Experimental probe of a complete 3D photonic band gap
- Enhanced Absorption in thin and ultrathin silicon films by 3D photonic band gap back reflectors
- Optical Properties of Chiral Three-Dimensional Photonic Crystals made from Semiconductors
- Observation of light propagation through a three-dimensional cavity superlattice in a 3D photonic band gap
- Non-utopian optical properties computed of a tomographically reconstructed real photonic nanostructure
- Dispersion of backward-propagating waves in a surface defect on a 3D photonic band gap crystal
- Symmetries and Wavefunctions of Photons Confined in 3D Photonic Band Gap Superlattices