Nanosecond Laser Irradiation for Interface Bonding Characterization

Vincent Larrey, Arthur Arribehaute, Brendon Caulfield, Pablo Acosta Alba, Christophe Morales, Paul Noël, Mathieu Opprecht, Frank Fournel, Didier Landru, Francois Rieutord
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Abstract

In this study, we propose a novel method to quantify the interfacial water trapped at the direct bonding interface. The concept is to intentionally create bonding defects with controlled size and shape, and use them as sensors for the gases generated through the oxidation of a material (in our case, Silicon) by water adsorbed on the surfaces prior to bonding. The evolution of the sensor sizes provides valuable insights into the amount of gas they have trapped, allowing us to analyze the imbibition effect. Analyzing sensors arrays also enables us to quantify the amount of water that was initially present at the bonding interface. Moreover, it opens up the possibility of proposing a novel bonding energy measurement method.
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纳秒激光辐照用于界面键合表征
在这项研究中,我们提出了一种新的方法来量化在直接键合界面上捕获的界面水。这个概念是有意制造出尺寸和形状可控的键合缺陷,并将它们用作传感器,用于在键合之前被吸附在表面的水氧化的材料(在我们的例子中是硅)所产生的气体。传感器尺寸的变化提供了有价值的信息来了解它们所捕获的气体量,使我们能够分析吸胀效应。分析传感器阵列也使我们能够量化最初出现在键合界面上的水量。此外,它开辟了提出一种新的键能测量方法的可能性。
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