High definition surface micromachining of LiNbO3 by ion implantation

被引:1
作者
Chiarini, M. [1 ]
Bentini, G. G. [2 ,3 ]
Bianconi, M. [2 ,3 ]
De Nicola, P. [2 ,3 ]
机构
[1] Carlo Gavazzi Space SpA, Sede Bologna & Lab MIST ER, I-40129 Bologna, Italy
[2] CNR IMM, I-40129 Bologna, Italy
[3] Lab MIST ER, I-40129 Bologna, Italy
关键词
High Energy Ion Implantation; Micromachining; Lithium Niobate; MEOS; LITHIUM-NIOBATE; ETCH TECHNIQUE; WAVE-GUIDES; CUT LINBO3; FABRICATION; OXYGEN;
D O I
10.1016/j.nimb.2010.05.038
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
High Energy Ion Implantation (HEII) of both medium and light mass ions has been successfully applied for the surface micromachining of single crystal LiNbO3 (LN) substrates. It has been demonstrated that the ion implantation process generates high differential etch rates in the LN implanted areas, when suitable implantation parameters, such as ion species, fluence and energy, are chosen. In particular, when traditional LN etching solutions are applied to suitably ion implanted regions, etch rates values up to three orders of magnitude higher than the typical etching rates of the virgin material, are registered. Further, the enhancement in the etching rate has been observed on x, y and z-cut single crystalline material, and, due to the physical nature of the implantation process, it is expected that it can be equivalently applied also to substrates with different crystallographic orientations. This technique, associated with standard photolithographic technologies, allows to generate in a fast and accurate way very high aspect ratio relief micrometric structures on LN single crystal surface. In this work a description of the developed technology is reported together with some examples of produced micromachined structures: in particular very precisely defined self sustaining suspended structures, such as beams and membranes, generated on LN substrates, are presented. The developed technology opens the way to actual three dimensional micromachining of LN single crystals substrates and, due to the peculiar properties characterising this material, (pyroelectric, electro-optic, acousto-optic, etc.), it allows the design and the production of complex integrated elements, characterised by micrometric features and suitable for the generation of advanced Micro Electro Optical Systems (MEOS). (c) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:3049 / 3054
页数:6
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