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(1) AND (1) AND: Refines search parameters
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DOI stands for Digital Object Identifier ( D igital O bject I dentifier ) ,
and is the unique identifier for objects on the internet. It can be used to create persistent link and to cite articles.

Using DOI as a persistent link

To create a persistent link, add「http://dx.doi.org/」 「 http://dx.doi.org/ 」 before a DOI.
For instance, if the DOI of an article is 10.5297/ser.1201.002 , you can link persistently to the article by entering the following link in your browser: http://dx.doi.org/ 10.5297/ser.1201.002
The DOI link will always direct you to the most updated article page no matter how the publisher changes the document's position, avoiding errors when engaging in important research.

Cite a document with DOI

When citing references, you should also cite the DOI if the article has one. If your citation guideline does not include DOIs, you may cite the DOI link.

DOIs allow accurate citations, improve academic contents connections, and allow users to gain better experience across different platforms. Currently, there are more than 70 million DOIs registered for academic contents. If you want to understand more about DOI, please visit airiti DOI Registrationdoi.airiti.com ) 。

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Times Cited : (2)

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What is "Preprint"?

In order to provide readers the forefront academic information, after articles are accepted to publish in the journal, we publish them in network before they're printed. Those "on-line first articles" are called the "preprint articles". The preprint articles do not have volume No., page No., publication date, but can be identified by the DOI number. 「 http://dx.doi.org/ 」 Link to the latest version of the article.

How to cite Preprint Articles?

Please use the online publication date and the DOI number of the preprint article to cite the literature.

Cited example (may vary with different formats you cited):

Author name. Article name. Journal name. YYYY/MM/DD online publish in advance.

doi:DOI Number

Basic Information

Language : Traditional Chinese

Available From: : 2012年

Basic & Applied Sciences > Physics

College of Science > Graduate Institute of Physics

Publisher

National Taiwan University

Taiwan

國立臺灣大學 Publishing 』

台大_NTU
2018年
Total7Pages
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41

基於電磁誘發透明機制的同調光記憶體之光場轉換

林聖翔

同調光記憶體電磁誘發透明光場轉換Coherent optical memoryElectromagnetically-induced transparencylight field conversion

10.6342/NTU201802546 DOI

Abstract | Reference(23) Download Download PDF Add to Cart Add to Cart Track Track

42

超快垂直式雙極有機光電晶體

鄒振洋

垂直夾層式電極超快光響應光通訊有機太陽能電池電阻式隨機存取記憶體光電晶體vertically aligned electrodesultra-fast responseoptical communicationorganic solar cellRRAMphototransistor

10.6342/NTU201802514 DOI

Article delay authorization/print view service Full-Text will be available on 2023/08/13

Abstract | Reference(65) Search in Library Search in Library Track Track

43

瞬態可撓光感測器

林詩堯

瞬態光感測器石墨烯葉綠素光電元件transientphotodetectorgraphenechlorophylloptoelectronics

10.6342/NTU201801667 DOI

Abstract | Reference(46) Download Download PDF Add to Cart Add to Cart Track Track

44

張量網路演算法對Thirring 模型在一維無限長格點之研究

洪浩迪

張量網路矩陣乘積態均勻矩陣乘積態的變分優化演算法時間相依變分原理Tirring 模型量子演化動態相變tensor network (TN)matrix product state (MPS)variational optimization algorithm for uniform matrix product state (VUMPS)time-dependent variational principle (TDVP)Thirring modelquantum quenchdynamical phase transition (DPT)

10.6342/NTU201802766 DOI

Abstract | Reference(18) Download Download PDF Add to Cart Add to Cart Track Track

45

強化學習用於發明自旋冰模型上的蒙地卡羅演算法

趙愷文

深度學習強化學習蒙地卡羅演算法自旋冰模型Reinforcement LearningDeep LearningMonte Carlo AlgorithmSpin Ice Model

10.6342/NTU201802242 DOI

Abstract | Reference(55) Download Download PDF Add to Cart Add to Cart Track Track

46

利用氣流梯度調控之高品質石墨烯成長

梁鈺弘

石墨烯CVD成長氣流梯度多層層數控制GrapheneCVD growthGas Flow GradientMultilayerControllable Layer

10.6342/NTU201701096 DOI

Abstract | Reference(55) Download Download PDF Add to Cart Add to Cart Track Track

47

高溫超導釔鋇銅氧薄膜之二氧化鈰緩衝層效應研究

陳祐丞

射頻磁控濺度高溫超導釔鋇銅氧氧化鈰緩衝層磁通釘扎buffer layerflux pinninghigh-Tc superconducty YBCOsputtering

10.6342/NTU201803205 DOI

Abstract | Reference(47) Unauthorized Unauthorized Track Track

48

應用石墨烯於光電平行讀取葡萄糖感測元件

張正翰

石墨烯高靈敏度光電葡萄糖感測器多層接面graphenehigh sensitivityoptical and electrical glucose sensingmultiple junctions

10.6342/NTU201802199 DOI

Abstract | Reference(59) Unauthorized Unauthorized Track Track

49

量子最佳化控制演算法之新發展與時變密度泛函中之準確最佳有效場

廖聖侖

量子最佳化控制理論分子轉動控制時變密度泛函理論時變最佳有效場記憶效應非絕熱近似密度度泛函理論quantum optimal control theorymolecular orientation controltime-dependent density functional theoryTDOEPmemory effectsnon-adiabatic TDDFT

10.6342/NTU201800385 DOI

Abstract | Reference(201) Unauthorized Unauthorized Track Track

50

共振腔之能率分析

邱昭景

開口式共振腔微波數值模擬共振頻率品質因子open cavitiesmicrowavenumerical simulationresonant frequencyquality factor

10.6342/NTU201801791 DOI

Abstract | Reference(3) Unauthorized Unauthorized Track Track

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2018年
Total 7 Pages

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