标题: 新颖材料开发计画---强化雷射分子束氧化物磊晶平台
Enforcement on the Platform of Laser Molecular Beam Oxide Epitaxy
作者: 朱英豪
Chu Ying-Hao
国立交通大学材料科学与工程学系(所)
关键字: 雷射分子束磊晶;氧化物薄膜;多功能奈米结构材料;绿能压电材料;多铁材料;多铁壁域;laser MBE;epitaxial;complex oxide;multifunctional nanostructrures;multiferroic materials
公开日期: 2010
摘要: 氧化物材料具有多样之结构特性,可以形成简单之二元氧化物,
亦可形成复杂之多元氧化物,同时包含许多特殊之优良性质,举
凡超导特性、巨磁阻特性、焦电、压电、介电、半导、导电、磁
性、光性等,几乎包含所有物理性质。氧化物电子目前正蓬勃之
发展,为下一个世代之电子元件提供另一种解决方案。
本计划第一年已获补助建立雷射分子束磊晶,可以快速大幅提升
我国学界与业界在氧化物磊晶研发之实力。计划要建立之系统雷
射分子束磊晶平台,将具有高工作气压之RHEED来进行临场薄膜
之成长,这样的系统可以提供氧化物磊晶薄膜技术庞大之资料
库。此一磊晶成长平台之建立,可以快速提升我国于氧化物磊晶
成长之基础能力,可以继续利用此平台研发新颖与新功能之材
料。高品质之材料为固态物理研究之基石,此平台建立后,已经
为以量测为主之研究群,提供样品确保其样品之品质。另外对于
成长氧化物磊晶有兴趣之研究群,这样的平台提供共同研发之机
会,可以藉由计画主持人长期之经验,快速的建立起新制程,以
利其他研究群材料之快速开发。
第二年将计画延伸此平台之完整
性与功能性,在此系统上增加高真空扫描系统,此系统除了可以
解决目前成长系统研发速度受限之缺点,亦可提供另一个快速与
安全平台,可以让成长我之高品质磊晶薄膜立即进行特性之量
测,此两部分将相辅相成,可以将我国氧化物磊晶之技术更往前
迈进一步,此系统将成为国内成长氧化物薄膜之模范平台,可以
厚植本国在此领域研发之能力。此一平台亦提供业界快速取得多
功能与高品质之氧化物磊晶,有助于缩短业界开发新制程与元件
之研发时间,同时间由于各种氧化物搭配,亦可由此一平台提供,
亦可提供业界元件制程与整合所遇到困难之解决方案。
目前使用者众多,系统无法兼顾新颖材料之开发与提供平台合作
对象高品质之样品,因此希望今年可以强化平台的功能,建立第
二套系统,以利开发和合作同时进行,同时也降低系统损坏维修
之风险。第二套之系统亦可为将来与同步辐射结合之开发分析系
统做准备。
Oxide materials are gifted systems, providing a variety of physical properties, including
superconducting, ferroelectric, piezoelectric, magnetic, CMR, optical, conducting and et al.
The combinations of these properties provide new solutions of next-generation electron
devices. The goal of this project is to build up a laser molecule beam epitaxy (Laser MBE)
system to fabricate epitaxial oxide heterostructures. Because it has the advantages of high
quality epitaxial growth, fast optimization, and good composition and interface control, it
has been a core technology on developing oxide heterostructures for many years. Such a
platform will greatly promote the ability of studying oxide electronics in academia and
industry. The laser MBE proposed here will combine high pressure RHEED to in-situ
monitor the growth of oxide films. Such a system will help us to build up a database for
oxide epitaxial growth and to understand the fundamental physics in behind. This new
platform can be used to develop new functional oxide materials and heterostructures. It can
also be used to provide high-quality epitaxial oxide films for research groups to do other
detailed measurements. It can also be used as a platform for industry to develop new oxide
devices. It will be an efficient approach to integrate research energy in academia and
industry.
First year, we have built up the Laser-MBE system, and it shows the capability to control the
film growth. Second year we have built up a high vacuum scanning probe microscope which
will provide us an environment to in-situ characterize the quality of the substrates, and to
understand the properties of our new functional oxide epitaxial films. The combination of
laser MBE and SPM is a powerful and fast tool to develop the basic understanding of oxide
films, which will be useful and helpful to academic research and industry.
Unfortunately, there are so many users, who need high quality samples from this platform. It
is very difficult to develop new oxide thin film and provide high quality samples to other
collaborated research groups only based on one system. In this year, we propose the enforcement of this platform by duplicating the same system, which will be used as a developing system. The second system can decrease the risk of the platform. In the future, we will combine this system with analysis chamber in NSRRC.
官方说明文件#: NSC99-2119-M009-003
URI: http://hdl.handle.net/11536/100731
https://www.grb.gov.tw/search/planDetail?id=2147773&docId=345719
显示于类别:Research Plans


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