Analytical and Technological Research Center “High Technologies & Nanostructured Materials”: History, Formation and Achieved Results

P. Geydt, A. V. Arzhannikov, A. L. Aseev, A. Shklyaev, V. Volodin, I. Azarov, V. Zaikovskii, D. Utkin, Y. Larichev, S. Chepkasov, S. Kuznetsov
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Abstract

The article provides information about the history of formation, development, main recent activities and achieved results of the Analytical and Technological Research Center of the Faculty of Physics of Novosibirsk State University (ATRC NSU) during its 15 years of operation. The main areas of physical research are: modern materials science, nanomaterials, nanotechnologies and technological processes, experimental diagnostics of structures and substances, development of methods for nanostructures fabrication, computer simulation of low-dimensional structures, improvement of the characteristics of solid-state semiconductor electronics, search for materials for storage and transfer of digital information, study of technological properties of low-dimensional semiconductors, catalysts, metamaterials and organic optoelectronics, study of materials and systems for terahertz electronics. Due to the organization of the Shared Research Facilities “High Technologies and Analytics of Nanosystems” (CCU “VTAN”) within the structure, ATRC successfully cooperates with scientific and educational organizations and with industrial companies of the real sector of the economy in the Siberian region, Russia and neighboring countries. The main part of scientific research is carried out by the staff of the youth Laboratory of Functional Diagnostics of Nanoscale Systems for Nanoelectronics (LabFDNS) that contributes to the involvement of students and young employees of NSU into the implementation of relevant in-demand research work, and thus provides them with a high level of training in their chosen specialty.
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高新技术与纳米结构材料分析技术研究中心:历史、形成与成果
本文介绍了新西伯利亚国立大学物理学院分析技术研究中心(ATRC NSU)成立15年来的历史、发展、主要活动和取得的成果。物理研究的主要领域有:现代材料科学,纳米材料,纳米技术和工艺过程,结构和物质的实验诊断,纳米结构制造方法的发展,低维结构的计算机模拟,固态半导体电子学特性的改进,寻找用于存储和传输数字信息的材料,低维半导体,催化剂的技术特性研究,超材料和有机光电子学,太赫兹电子材料和系统的研究。由于在结构内组织了共享研究设施“纳米系统的高科技和分析”(CCU“VTAN”),ATRC成功地与西伯利亚地区,俄罗斯和邻国的科学和教育组织以及实体经济部门的工业公司合作。科学研究的主要部分是由纳米电子学纳米系统功能诊断青年实验室(LabFDNS)的工作人员进行的,这有助于NSU的学生和年轻员工参与相关需求研究工作的实施,从而为他们提供所选专业的高水平培训。
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26
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