LDR | | 00000nmm u2200205 4500 |
001 | | 000000330641 |
005 | | 20241104112744 |
008 | | 181129s2018 ||| | | | eng d |
020 | |
▼a 9780438097322 |
035 | |
▼a (MiAaPQ)AAI10891769 |
035 | |
▼a (MiAaPQ)OhioLINK:osu1514242630852514 |
040 | |
▼a MiAaPQ
▼c MiAaPQ
▼d 248032 |
049 | 1 |
▼f DP |
082 | 0 |
▼a 530 |
100 | 1 |
▼a Wang, Zhou. |
245 | 10 |
▼a Mid-infrared Strong-field Laser Interactions with Nanoclusters and Semiconductors. |
260 | |
▼a [S.l.] :
▼b The Ohio State University.,
▼c 2018 |
260 | 1 |
▼a Ann Arbor :
▼b ProQuest Dissertations & Theses,
▼c 2018 |
300 | |
▼a 183 p. |
500 | |
▼a Source: Dissertation Abstracts International, Volume: 79-10(E), Section: B. |
500 | |
▼a Adviser: Louis DiMauro. |
502 | 1 |
▼a Thesis (Ph.D.)--The Ohio State University, 2018. |
520 | |
▼a In the interaction of intense infrared lasers with atoms/molecules, an ionized election is accelerated by the laser field, and revisits the parent ion. High energy electrons are generated after rescattering with the ion, or alternatively, harmon |
520 | |
▼a This study discusses the behavior of nanoclusters and semiconductors under intense femtosecond laser fields. In the laser interaction with nanoclusters, photoelectron and charged ion emission are investigated at various driving laser wavelengths |
520 | |
▼a In the laser interaction with semiconductors, the high harmonic photon emission driven by mid-infrared lasers are measured, which comes from distinct mechanisms from atoms/molecules. The roles of photocarrier density and driving wavelength are e |
590 | |
▼a School code: 0168. |
650 | 4 |
▼a Physics. |
690 | |
▼a 0605 |
710 | 20 |
▼a The Ohio State University.
▼b Physics. |
773 | 0 |
▼t Dissertation Abstracts International
▼g 79-10B(E). |
773 | |
▼t Dissertation Abstract International |
790 | |
▼a 0168 |
791 | |
▼a Ph.D. |
792 | |
▼a 2018 |
793 | |
▼a English |
856 | 40 |
▼u http://www.riss.kr/pdu/ddodLink.do?id=T15000268
▼n KERIS |
980 | |
▼a 201812
▼f 2019 |
990 | |
▼a 관리자
▼b 관리자 |