Abstract
Two-dimensional photonic band gap structures were fabricated by x-ray lithography combined with ion etching on metalorganic chemical vapor deposition grown GaAs/AlGaAs waveguides. Such structures, more amenable to fabrication than fully three-dimensional photonic crystals, allow the confinement of light in the third direction using index guiding. The feasibility of complex high-resolution (down to 50 nm) unit cell fabrication has been demonstrated by exploiting x-ray diffraction and nonlinear resist response during the development process. Optical characterizations of some samples were performed. These characterizations show the presence of well-defined photonic band gap structures and second harmonic property generation. The results have been discussed and compared with theoretical simulation.
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CITATION STYLE
Businaro, L., Romanato, F., Candeloro, P., Di Fabrizio, E., Patrini, M., Galli, M., … De Vittorio, M. (2003). High-resolution complex structures for two-dimensional photonic crystals realized by x-ray diffraction lithography. Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena, 21(2), 748–753. https://doi.org/10.1116/1.1547726
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