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Titlebook: Nanotechnology for Electronic Materials and Devices; Anatoli Korkin,Evgeni Gusev,Serge Luryi Book 2007 Springer-Verlag US 2007 CMOS.DRAM.e

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发表于 2025-3-21 20:09:34 | 显示全部楼层 |阅读模式
书目名称Nanotechnology for Electronic Materials and Devices
编辑Anatoli Korkin,Evgeni Gusev,Serge Luryi
视频video
概述Covers one of the hottest topic of the new millennium with $2.4B in funding in the US alone.Outlines the current status and future trends of micro- and nano-electronics research.Written by leading exp
丛书名称Nanostructure Science and Technology
图书封面Titlebook: Nanotechnology for Electronic Materials and Devices;  Anatoli Korkin,Evgeni Gusev,Serge Luryi Book 2007 Springer-Verlag US 2007 CMOS.DRAM.e
描述The high level of attention and interest of the global community to NANO science and technology to a large extent is linked to the GIGAntic challenges for the c- tinuing growth of information technology, which sparked an unprecedented level of interdisciplinary and international cooperation among industrial and academic researchers, companies, IT market rivals, and countries, including former political and military rivals . Microelectronics technologies have reached a new stage in their development: The latest miniaturization of electronic devices is approaching atomic dimensions, interconnect bottlenecks are limiting circuit speeds, new ma- rials are being introduced into microelectronics manufacture at an unprecedented rate , and alternative technologies to mainstream complementary metal-oxide sem- conductors (CMOSs) are being considered . The very dynamic stage of science and technology related to the advanced and future electronics and photonics creates a growing gap between the large number of rapid publications and nanotechnology highlights in media on one side and fundamental understanding of underlying phenomena and an adequate evaluation of scientific discoveries and techn
出版日期Book 2007
关键词CMOS; DRAM; electronics; laser; nanostructure; nanotechnology; non-volatile memory; quantum dot; simulation;
版次1
doihttps://doi.org/10.1007/978-0-387-49965-9
isbn_softcover978-1-4419-3612-7
isbn_ebook978-0-387-49965-9Series ISSN 1571-5744 Series E-ISSN 2197-7976
issn_series 1571-5744
copyrightSpringer-Verlag US 2007
The information of publication is updating

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Samuel S. Maose necessary changes using strategies, structures, and practices that take advantage ofcapitalism‘s strengths. Its goal is to demonstrate how a reimagined financial system can be more inclusive and accountable to all. By shifting away from extractive, short-term practices in the name of shareholder
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Gennadi Bersuker,Byoung H. Lee,Anatoli Korkin,Howard R. Huffated either in under-graduation as well as in the post graduation in the several exact programs but no earlier requirements were needed from the students unless the basic physics and mathematics. At the same time, the book must be original enough to contribute to the existing literature but with no
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italism‘s strengths. Its goal is to demonstrate how a reimagined financial system can be more inclusive and accountable to all. By shifting away from extractive, short-term practices in the name of shareholder 978-3-031-22616-8978-3-031-22614-4
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R. A. Rao,M. A. Sadd,R. F. Steimle,C. T. Swift,H. Gasquet,M. Stokergrams but no earlier requirements were needed from the students unless the basic physics and mathematics. At the same time, the book must be original enough to contribute to the existing literature but with no 978-981-16-3546-5978-981-16-3544-1Series ISSN 1867-8440 Series E-ISSN 1867-8459
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1571-5744 een the large number of rapid publications and nanotechnology highlights in media on one side and fundamental understanding of underlying phenomena and an adequate evaluation of scientific discoveries and techn978-1-4419-3612-7978-0-387-49965-9Series ISSN 1571-5744 Series E-ISSN 2197-7976
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Strategies of Nanoscale Semiconductor Lasers,tor gain medium is scaled down from the bulk to the nanometer scale. Consequently, semiconductor lasers built with nanoscale active media are expected to exhibit extraordinary features such as great color range, high optical gain, and low lasing threshold. Indeed, miniaturized lasers using nanoscale
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