Single-crystalline LiNbO3 integrated onto Si-based substrates via Ar plasma-activated low-temperature direct bonding

rui Huang, Mingzhi Tang, Wanyu Kan, Hao Xu, Kai Wu, Zhiyong Wang, Hui Li
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Abstract

Abstract Lithium niobate (LiNbO 3 ) crystals are multifunctional materials with excellent performance and are widely used in integrated optical devices. In this study, 4-inch LiNbO 3 /Si and LiNbO 3 /SiO 2 /Si bonded pairs were obtained by optimizing Ar plasma activation. After pre-bonding was completed, a slicer was used to cut the LiNbO 3 /Si and LiNbO 3 /SiO 2 /Si pairs into 10 × 10 mm 2 squares, respectively. The optimal annealing temperature was determined through multiple annealing experiments. Scanning acoustic microscopy was used to confirm the high bonding rates of the two bonding pairs. Based on hydrophilic experiments and atomic force microscopy, the changes in the hydrophilicity and roughness of the LiNbO 3 , Si, and SiO 2 surfaces before and after activation can be compared. X-ray photoelectron spectroscopy was used to characterize the chemical structure composition of LiNbO 3 , Si, and SiO 2 surfaces. The dense interface without defects was observed by transmission electron microscopy. In addition, we explained the bonding mechanism between LiNbO 3 and Si-based materials. The reasons for the different bonding strengths of LiNbO 3 with Si and SiO 2 were also analyzed. Finally, the high bonding quality of LiNbO 3 and Si-based materials can meet the stringent material requirements of Si-based LiNbO 3 devices.
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通过氩等离子体激活低温直接键合将单晶LiNbO3集成到硅基衬底上
摘要铌酸锂晶体是一种性能优异的多功能材料,广泛应用于集成光学器件中。本研究通过优化氩等离子体活化得到了4英寸的linbo3 /Si和linbo3 / sio2 /Si键合对。预粘接完成后,用切片机将linbo3 /Si和linbo3 / sio2 /Si对分别切割成10 × 10 mm 2的正方形。通过多次退火实验确定了最佳退火温度。扫描声学显微镜证实了两个键对的高成键率。通过亲水性实验和原子力显微镜,比较了活化前后linbo3、Si和sio2表面亲水性和粗糙度的变化。利用x射线光电子能谱对linbo3、Si和sio2表面的化学结构组成进行了表征。透射电镜观察到致密的界面无缺陷。此外,我们还解释了linbo3与si基材料之间的键合机制。分析了linbo3与Si、sio2结合强度不同的原因。最后,linbo3与si基材料的高键合质量可以满足si基linbo3器件严格的材料要求。
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