找回密碼
 To register

QQ登錄

只需一步,快速開始

掃一掃,訪問微社區(qū)

打印 上一主題 下一主題

Titlebook: Atomic-Scale Electronics Beyond CMOS; Mircea Dragoman,Daniela Dragoman Book 2021 Springer Nature Switzerland AG 2021 2D Materials for Quan

[復(fù)制鏈接]
查看: 45841|回復(fù): 38
樓主
發(fā)表于 2025-3-21 19:53:48 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Atomic-Scale Electronics Beyond CMOS
影響因子2023Mircea Dragoman,Daniela Dragoman
視頻videohttp://file.papertrans.cn/165/164801/164801.mp4
發(fā)行地址Introduces new solutions to continue nanoelectronics after Moore‘s law, which is approaching its end.By two experts who helped the development of new materials and devices at the boundaries of Moore‘s
圖書封面Titlebook: Atomic-Scale Electronics Beyond CMOS;  Mircea Dragoman,Daniela Dragoman Book 2021 Springer Nature Switzerland AG 2021 2D Materials for Quan
影響因子.This book explores emerging topics in atomic- and nano-scale electronics after the era of Moore’s Law, covering both the physical principles behind, and technological implementations for many devices that are now expected? to become? key elements of the future of nanoelectronics beyond traditional complementary metal-oxide semiconductors (CMOS). Moore’s law is not a physical law itself, but rather a visionary prediction that has worked well for more than 50 years but is rapidly coming to its end as the gate length of CMOS transistors approaches the length-scale of only a few atoms. Thus, the key question here is: “What is the future for nanoelectronics beyond CMOS?”?.The possible answers are found in this book. Introducing novel quantum devices such as atomic–scale electronic devices, ballistic devices, memristors, superconducting devices, this book also presents the reader with the physical principles underlying new ways of computing, as well as their practical implementation. Topics such as quantum computing, neuromorphic computing are highlighted here as some of the most promising candidates for ushering in a new era of atomic-scale electronics beyond CMOS..
Pindex Book 2021
The information of publication is updating

書目名稱Atomic-Scale Electronics Beyond CMOS影響因子(影響力)




書目名稱Atomic-Scale Electronics Beyond CMOS影響因子(影響力)學(xué)科排名




書目名稱Atomic-Scale Electronics Beyond CMOS網(wǎng)絡(luò)公開度




書目名稱Atomic-Scale Electronics Beyond CMOS網(wǎng)絡(luò)公開度學(xué)科排名




書目名稱Atomic-Scale Electronics Beyond CMOS被引頻次




書目名稱Atomic-Scale Electronics Beyond CMOS被引頻次學(xué)科排名




書目名稱Atomic-Scale Electronics Beyond CMOS年度引用




書目名稱Atomic-Scale Electronics Beyond CMOS年度引用學(xué)科排名




書目名稱Atomic-Scale Electronics Beyond CMOS讀者反饋




書目名稱Atomic-Scale Electronics Beyond CMOS讀者反饋學(xué)科排名




單選投票, 共有 1 人參與投票
 

0票 0.00%

Perfect with Aesthetics

 

1票 100.00%

Better Implies Difficulty

 

0票 0.00%

Good and Satisfactory

 

0票 0.00%

Adverse Performance

 

0票 0.00%

Disdainful Garbage

您所在的用戶組沒有投票權(quán)限
沙發(fā)
發(fā)表于 2025-3-21 22:55:49 | 只看該作者
板凳
發(fā)表于 2025-3-22 02:25:34 | 只看該作者
地板
發(fā)表于 2025-3-22 07:45:05 | 只看該作者
Book 2021and technological implementations for many devices that are now expected? to become? key elements of the future of nanoelectronics beyond traditional complementary metal-oxide semiconductors (CMOS). Moore’s law is not a physical law itself, but rather a visionary prediction that has worked well for
5#
發(fā)表于 2025-3-22 12:33:00 | 只看該作者
6#
發(fā)表于 2025-3-22 15:56:36 | 只看該作者
from micro to nanoscale, an example being circuits based on process technologies developed for FinFETs at 10?nm node. Going bellow with scaling, we reach the atomic scale, where the first devices based on single-atom-like structures such as single dopants are reported and analyzed.
7#
發(fā)表于 2025-3-22 17:45:59 | 只看該作者
8#
發(fā)表于 2025-3-22 23:04:58 | 只看該作者
9#
發(fā)表于 2025-3-23 03:57:57 | 只看該作者
s, also known as atomically thick materials or 2D materials. These include the most widespread 2D materials: graphene and transition metals chalcogenides (TMDs). The chapter continues then with single dopants in semiconductors, which are used in atomic electronics, and dangling bonds used in logic gates.
10#
發(fā)表于 2025-3-23 08:06:36 | 只看該作者
 關(guān)于派博傳思  派博傳思旗下網(wǎng)站  友情鏈接
派博傳思介紹 公司地理位置 論文服務(wù)流程 影響因子官網(wǎng) 吾愛論文網(wǎng) 大講堂 北京大學(xué) Oxford Uni. Harvard Uni.
發(fā)展歷史沿革 期刊點(diǎn)評(píng) 投稿經(jīng)驗(yàn)總結(jié) SCIENCEGARD IMPACTFACTOR 派博系數(shù) 清華大學(xué) Yale Uni. Stanford Uni.
QQ|Archiver|手機(jī)版|小黑屋| 派博傳思國際 ( 京公網(wǎng)安備110108008328) GMT+8, 2026-1-16 08:13
Copyright © 2001-2015 派博傳思   京公網(wǎng)安備110108008328 版權(quán)所有 All rights reserved
快速回復(fù) 返回頂部 返回列表
老河口市| 万源市| 苏尼特右旗| 钦州市| 淮滨县| 宁阳县| 唐河县| 周宁县| 玛多县| 启东市| 普洱| 如皋市| 淳化县| 阿克苏市| 手机| 崇仁县| 罗甸县| 平潭县| 麦盖提县| 江永县| 鹤庆县| 大厂| 新建县| 九江市| 临桂县| 清徐县| 凤凰县| 云和县| 新绛县| 花莲市| 台南县| 资源县| 科技| 浙江省| 丹阳市| 平果县| 灌阳县| 措勤县| 民乐县| 山西省| 景谷|