Journal article 1281 views 342 downloads
Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect
Nano Research
Swansea University Author: Lijie Li
-
PDF | Accepted Manuscript
Download (1.07MB)
DOI (Published version): 10.1007/s12274-017-1457-y
Abstract
We report on manipulating the stimulated emission of monolayer molybdenum disulfide (MoS2) with the piezoelectric effect. The analysis is based on quantum mechanics. The stimulated emission of this two-dimensional material has been simulated to establish the relation between the total emission rate...
Published in: | Nano Research |
---|---|
ISSN: | 1998-0124 1998-0000 |
Published: |
2017
|
Online Access: |
Check full text
|
URI: | https://cronfa.swan.ac.uk/Record/cronfa31840 |
first_indexed |
2017-02-01T14:46:29Z |
---|---|
last_indexed |
2018-02-09T05:19:07Z |
id |
cronfa31840 |
recordtype |
SURis |
fullrecord |
<?xml version="1.0"?><rfc1807><datestamp>2017-11-07T15:48:53.6702119</datestamp><bib-version>v2</bib-version><id>31840</id><entry>2017-02-01</entry><title>Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect</title><swanseaauthors><author><sid>ed2c658b77679a28e4c1dcf95af06bd6</sid><ORCID>0000-0003-4630-7692</ORCID><firstname>Lijie</firstname><surname>Li</surname><name>Lijie Li</name><active>true</active><ethesisStudent>false</ethesisStudent></author></swanseaauthors><date>2017-02-01</date><deptcode>ACEM</deptcode><abstract>We report on manipulating the stimulated emission of monolayer molybdenum disulfide (MoS2) with the piezoelectric effect. The analysis is based on quantum mechanics. The stimulated emission of this two-dimensional material has been simulated to establish the relation between the total emission rate and the energy of the photon excitation. We demonstrate that the piezoelectric-induced charges enhance the emission rate by changing the carrier concentration. It is found that the emission intensity is proportional to the carrier density in the low-density range, and eventually reaches a steady value in the high-density region. An externally applied mechanical force also leads to a change in the second harmonic generation of the monolayer MoS2.</abstract><type>Journal Article</type><journal>Nano Research</journal><publisher/><issnPrint>1998-0124</issnPrint><issnElectronic>1998-0000</issnElectronic><keywords/><publishedDay>29</publishedDay><publishedMonth>3</publishedMonth><publishedYear>2017</publishedYear><publishedDate>2017-03-29</publishedDate><doi>10.1007/s12274-017-1457-y</doi><url/><notes/><college>COLLEGE NANME</college><department>Aerospace, Civil, Electrical, and Mechanical Engineering</department><CollegeCode>COLLEGE CODE</CollegeCode><DepartmentCode>ACEM</DepartmentCode><institution>Swansea University</institution><apcterm/><lastEdited>2017-11-07T15:48:53.6702119</lastEdited><Created>2017-02-01T10:08:14.8179831</Created><path><level id="1">Faculty of Science and Engineering</level><level id="2">School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering</level></path><authors><author><firstname>Lijie</firstname><surname>Li</surname><orcid>0000-0003-4630-7692</orcid><order>1</order></author><author><firstname>Yan</firstname><surname>Zhang</surname><order>2</order></author></authors><documents><document><filename>0031840-03032017083708.pdf</filename><originalFilename>li2017(2).pdf</originalFilename><uploaded>2017-03-03T08:37:08.4800000</uploaded><type>Output</type><contentLength>1194385</contentLength><contentType>application/pdf</contentType><version>Accepted Manuscript</version><cronfaStatus>true</cronfaStatus><embargoDate>2018-03-29T00:00:00.0000000</embargoDate><copyrightCorrect>false</copyrightCorrect><language>eng</language></document></documents><OutputDurs/></rfc1807> |
spelling |
2017-11-07T15:48:53.6702119 v2 31840 2017-02-01 Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect ed2c658b77679a28e4c1dcf95af06bd6 0000-0003-4630-7692 Lijie Li Lijie Li true false 2017-02-01 ACEM We report on manipulating the stimulated emission of monolayer molybdenum disulfide (MoS2) with the piezoelectric effect. The analysis is based on quantum mechanics. The stimulated emission of this two-dimensional material has been simulated to establish the relation between the total emission rate and the energy of the photon excitation. We demonstrate that the piezoelectric-induced charges enhance the emission rate by changing the carrier concentration. It is found that the emission intensity is proportional to the carrier density in the low-density range, and eventually reaches a steady value in the high-density region. An externally applied mechanical force also leads to a change in the second harmonic generation of the monolayer MoS2. Journal Article Nano Research 1998-0124 1998-0000 29 3 2017 2017-03-29 10.1007/s12274-017-1457-y COLLEGE NANME Aerospace, Civil, Electrical, and Mechanical Engineering COLLEGE CODE ACEM Swansea University 2017-11-07T15:48:53.6702119 2017-02-01T10:08:14.8179831 Faculty of Science and Engineering School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering Lijie Li 0000-0003-4630-7692 1 Yan Zhang 2 0031840-03032017083708.pdf li2017(2).pdf 2017-03-03T08:37:08.4800000 Output 1194385 application/pdf Accepted Manuscript true 2018-03-29T00:00:00.0000000 false eng |
title |
Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect |
spellingShingle |
Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect Lijie Li |
title_short |
Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect |
title_full |
Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect |
title_fullStr |
Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect |
title_full_unstemmed |
Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect |
title_sort |
Controlling the luminescence of monolayer MoS2 based on the piezoelectric effect |
author_id_str_mv |
ed2c658b77679a28e4c1dcf95af06bd6 |
author_id_fullname_str_mv |
ed2c658b77679a28e4c1dcf95af06bd6_***_Lijie Li |
author |
Lijie Li |
author2 |
Lijie Li Yan Zhang |
format |
Journal article |
container_title |
Nano Research |
publishDate |
2017 |
institution |
Swansea University |
issn |
1998-0124 1998-0000 |
doi_str_mv |
10.1007/s12274-017-1457-y |
college_str |
Faculty of Science and Engineering |
hierarchytype |
|
hierarchy_top_id |
facultyofscienceandengineering |
hierarchy_top_title |
Faculty of Science and Engineering |
hierarchy_parent_id |
facultyofscienceandengineering |
hierarchy_parent_title |
Faculty of Science and Engineering |
department_str |
School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering |
document_store_str |
1 |
active_str |
0 |
description |
We report on manipulating the stimulated emission of monolayer molybdenum disulfide (MoS2) with the piezoelectric effect. The analysis is based on quantum mechanics. The stimulated emission of this two-dimensional material has been simulated to establish the relation between the total emission rate and the energy of the photon excitation. We demonstrate that the piezoelectric-induced charges enhance the emission rate by changing the carrier concentration. It is found that the emission intensity is proportional to the carrier density in the low-density range, and eventually reaches a steady value in the high-density region. An externally applied mechanical force also leads to a change in the second harmonic generation of the monolayer MoS2. |
published_date |
2017-03-29T01:14:45Z |
_version_ |
1821366115411951616 |
score |
11.04748 |