Cited time in webofscience Cited time in scopus

Full metadata record

DC Field Value Language
dc.contributor.advisor 김칠민 -
dc.contributor.author Ji-Hwan Kim -
dc.date.accessioned 2022-07-07T02:29:21Z -
dc.date.available 2022-07-07T02:29:21Z -
dc.date.issued 2021 -
dc.identifier.uri http://dgist.dcollection.net/common/orgView/200000365653 en_US
dc.identifier.uri http://hdl.handle.net/20.500.11750/16720 -
dc.description.abstract Chaotic behaviours were rst recognized in the early twentieth century while attempting to understand the three-body problems. After chaos was accepted as one of the intrinsic properties of nature, plenty of issues related to quantum properties in classically chaotic systems have been raised and resolved. Through intensive e orts in the eld to unveil this quantum-classical correspondence in chaotic systems, it was revealed that resonance spectra in chaotic systems are very irregular and complicated compared to those in non-chaotic systems. This spectral complexity comes from the fact that as a regular system is gradually perturbed into a chaotic one, mode splittings, breaking of degeneracies, and avoided crossings take place in resonance dynamics. Motivated by these mechanisms, we show that light absorption in chaotic nanowires in an array is remarkably enhanced under the condition of a chaotic wire cross-section. According to our results, this enhancement is proportional to the number of absorption modes, which emerge as the deformation of cross-section increases. We numerically verify the light absorption enhancement by using nite-di erence time-domain simulations and show that the increase in the number of modes is caused by mode splittings and avoided crossings. The light absorption enhancement is experimentally demonstrated by using fabricated samples of freestanding Si-nanowire PDMS composites. Our results are applicable not only to transparent solar cells but also to a CMOS image sensors to maximize absorption efficiency. -
dc.description.statementofresponsibility Y -
dc.description.tableofcontents I. Introduction 1
1.1 Chaotic Cross-Sectional Nanowires 3

II. Numerical Simulation 5
2.1 Light Absorption Spectra 5
2.2 Leaky Waveguide Mode 9
2.2.1 Avoided Crossings 13
2.2.2 Number of Absorption Peaks 18
2.3 Generality of Absorption Enhancement in Nano- to Micro-wire 22
2.4 Image Sensor Application 24

III. Experimental Verification 28
3.1 Transparent Si-PDMS Microwire Composite 28

IV. Conclusion 36
Appendices 37
A. Fourier Filtering of Fabry-Perot Modes 38
B. Methods 43
References 45
Summary(요약문) 50
-
dc.format.extent 50 -
dc.language eng -
dc.publisher DGIST -
dc.subject Chaotic nanowire, chaos, Transparent solar cell, image sensor, nanowire, 카오스, 반도체, 나노와이어, 혼돈, 혼돈 나노와이어, 빛의 흡수 향상 -
dc.title Light Absorption Enhancement in Semiconductor Chaotic Nanowire Arrays: Transparent Solar Cell and Image Sensor Application -
dc.title.alternative 반도체 혼돈 나노와이어 배열에서 빛의 흡수 향상: 투명태양전지, 이미지센서 응용 -
dc.type Thesis -
dc.identifier.doi 10.22677/thesis.200000365653 -
dc.description.alternativeAbstract 우리는 혼돈 원리를 이용하여 반도체 나노와이어에서 혼돈에 의해 빛의 흡수가 향상되는 현상에 대해 연구하였다. 결과에 의하면, 혼돈 현상에 의하여 나노와이어 공명 스펙트럼에 여기되는 빛의 모드의 개수가 늘어나고, 이렇게 늘어난 여기된 모 -
dc.description.degree Doctor -
dc.contributor.department Emerging Materials Science -
dc.contributor.coadvisor Kyonung Jin Choi -
dc.date.awarded 2021/02 -
dc.publisher.location Daegu -
dc.description.database dCollection -
dc.citation XT.MD 김78 202102 -
dc.contributor.alternativeDepartment 신물질과학전공 -
dc.contributor.affiliatedAuthor Ji-Hwan Kim -
dc.contributor.affiliatedAuthor Chil-Min Kim -
dc.contributor.affiliatedAuthor Kyonung Jin Choi -
dc.contributor.alternativeName 김지환 -
dc.contributor.alternativeName Chil-Min Kim -
dc.contributor.alternativeName 최경진 -
Files in This Item:
200000365653.pdf

200000365653.pdf

기타 데이터 / 27.49 MB / Adobe PDF download
Appears in Collections:
Department of Physics and Chemistry Theses Ph.D.

qrcode

  • twitter
  • facebook
  • mendeley

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.

BROWSE