首页> 外文会议>Indium Phosphide and Related Materials, 1997., International Conference on >Feedback control of substrate temperature and film composition during MBE growth of lattice-matched InGaAs on InP
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Feedback control of substrate temperature and film composition during MBE growth of lattice-matched InGaAs on InP

机译:InP上晶格匹配的InGaAs的MBE生长期间衬底温度和膜成分的反馈控制

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The use of in situ sensors to achieve real-time control of MBE growth is a rapidly evolving technology that promises to revolutionize MBE in terms of process repeatability and first-pass success, and consequently, to improve the overall yield and reduce the cost of the process. For the growth of InGaAs and related materials on InP, the most critical process variables to control are the substrate temperature and the epitaxial layer composition, insofar as both of these parameters can have dramatic effects on the performance of heterojunction bipolar transistors and other electronic and opto-electronic devices grown on InP. To achieve robust real-time control of the MBE growth process, we have constructed a multiple-sensor control system comprising in situ sensors for substrate temperature, effusion cell fluxes, and epitaxial layer composition and thickness, along with advanced software to manage the sensor information and execute sensor-feedback control algorithms. The design and operation of this system is described and its performance is illustrated through examples of real-time sensor-feedback control of substrate temperature and layer composition during the growth of InGaAs on InP.
机译:使用原位传感器来实现MBE增长的实时控制是一项快速发展的技术,有望在工艺可重复性和首过成功方面彻底改变MBE,从而提高总产量并降低制造成本。过程。对于InGaAs和相关材料在InP上的生长,要控制的最关键的工艺变量是衬底温度和外延层组成,因为这两个参数均会对异质结双极晶体管以及其他电子和光电器件的性能产生重大影响。 InP上生长的电子设备。为了实现对MBE生长过程的强大实时控制,我们构建了一个多传感器控制系统,该系统包括用于基质温度,渗出池通量,外延层组成和厚度的原位传感器,以及用于管理传感器信息的先进软件并执行传感器反馈控制算法。描述了该系统的设计和操作,并通过在InP上生长InGaAs期间对衬底温度和层组成进行实时传感器反馈控制的示例说明了其性能。

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