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dc.contributor.authorWicharn S.
dc.contributor.authorBuranasiri P.
dc.date.accessioned2021-04-05T03:26:26Z-
dc.date.available2021-04-05T03:26:26Z-
dc.date.issued2015
dc.identifier.issn0277786X
dc.identifier.other2-s2.0-84951831531
dc.identifier.urihttps://ir.swu.ac.th/jspui/handle/123456789/13780-
dc.identifier.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84951831531&doi=10.1117%2f12.2186931&partnerID=40&md5=404cf5d20c9ca0f570161e7e1ea3b076
dc.description.abstractIn this article, we have numerically investigated an intense terahertz (THz) pulses generation in gaseous plasma based on the third-order nonlinear effect, four-wave mixing rectification (FWMR). We have proposed that the fundamental fields and second-harmonic field of ultra-short pulse lasers are combined and focused into a very small gas chamber to induce a gaseous plasma, which intense THz pulse is produced. To understand the THz generation process, the first-order multiple-scale perturbation method (MSPM) has been utilized to derive a set of nonlinear coupled-mode equations for interacting fields such as two fundamental fields, a second-harmonic field, and a THz field. Then, we have simulate the intense THz-pulse generation by using split step-beam propagation method (SS-BPM) and calculated output THz intensities. Finally, the output THz intensities generated from induced air, nitrogen, and argon plasma have been compared. © 2015 SPIE.
dc.subjectBeam propagation method
dc.subjectCrack propagation
dc.subjectFour wave mixing
dc.subjectHarmonic analysis
dc.subjectNitrogen plasma
dc.subjectNonlinear equations
dc.subjectNonlinear optics
dc.subjectPerturbation techniques
dc.subjectTerahertz waves
dc.subjectUltrashort pulses
dc.subjectFour-wave-mixing process
dc.subjectGaseous plasmas
dc.subjectMultiple-scale perturbation
dc.subjectNonlinear coupled-mode equations
dc.subjectTerahertz generation
dc.subjectTerahertz pulse generation
dc.subjectThird-order nonlinear effect
dc.subjectUltra-short pulse laser
dc.subjectPulse generators
dc.titleIntense terahertz-pulse generation by four-wave mixing process in induced gas plasma
dc.typeConference Paper
dc.rights.holderScopus
dc.identifier.bibliograpycitationProceedings of SPIE - The International Society for Optical Engineering. Vol 9546, (2015)
dc.identifier.doi10.1117/12.2186931
Appears in Collections:Scopus 1983-2021

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