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Enhanced terahertz radiation generation by two-color laser pulses propagating in plasma

Published online by Cambridge University Press:  29 April 2016

N.K. Verma
Affiliation:
Department of Physics, University of Lucknow, Lucknow-226007, India
P. Jha*
Affiliation:
Department of Physics, University of Lucknow, Lucknow-226007, India
*
Address correspondence and reprint requests to: P. Jha, Department of Physics, University of Lucknow, Lucknow-226007, India. E-mail: [email protected]

Abstract

A one-dimensional (1D) numerical model for studying enhanced terahertz (THz) radiation generation by mixing of ordinary and extraordinary modes of two-color laser pulses propagating in magnetized plasma has been presented. The direction of the static external magnetic field is such that one of the two laser pulses propagates in the extraordinary mode, while the other pulse propagates in the ordinary mode, through homogeneous plasma. A transverse electromagnetic wave with frequency in the THz range is generated due to the presence of the external magnetic field. It is observed that larger amplitude THz radiation can be generated by mixing of the ordinary and extraordinary modes of the two-color laser pulses as compared with the single laser pulse propagating in the extraordinary mode. Further, 2D simulations using the XOOPIC code show that the fields obtained via simulation study are compatible with those obtained from the numerical model.

Type
Research Article
Copyright
Copyright © Cambridge University Press 2016 

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References

REFERENCES

Carey, J.J., Bailey, R.T., Pugh, D., Sherwood, J.N., Cruickshank, F.R. & Wynne, K. (2002). Terahertz pulse generation in an organic crystal by optical rectification and resonant excitation of molecular charge transfer. Appl. Phys. Lett. 81, 43354337.CrossRefGoogle Scholar
Chen, Zi.-Y. & Pukhov, A. (2015). High field terahertz emission from relativistic laser-driven plasma wakefields. Phys. Plasmas 22, 103105/1-4.CrossRefGoogle Scholar
Houard, A., Liu, Y., Prade, B., Tikhonchuk, V.T. & Mysyrowicz, A. (2008). Strong enhancement of terahertz radiation from laser filaments in air by static electric field. Phys. Rev. Lett. 100, 255006/1-4.CrossRefGoogle ScholarPubMed
Jha, P., Saroch, A. & Mishra, R.K. (2011). Genearation of wakefields and terahertz radiation in laser-magnetized plasma interaction. Europhys. Lett. 94, 15001-p1-15001-p6.CrossRefGoogle Scholar
Jha, P. & Verma, N.K. (2014). Numerical and simulation study of terahertz radiation generation by laser pulses propagating in the extraordinary mode in magnetized plasma. Phys. Plasmas 21, 063106/1-6.CrossRefGoogle Scholar
Leemans, W.P., Geddes, C.G.R., Faure, van Tilborg, J.T., Tilborg, J.V., Schroeder, C.B., Esarey, E., Fubiani, G., Auerbach, D., Marcelis, B., Carnahan, M.A., Kaindl, R.A., Byrd, J. & Martin, M.C. (2003). Observation of terahertz emission from a laser-plasma accelerated electron bunch crossing a plasma-vacuum boundary. Phys. Rev. Lett. 91, 074802/1-4.CrossRefGoogle Scholar
Liao, G.Q., Li, Y.T., Li, C., Su, L.N., Zheng, Y., Liu, M., Wang, W.M., Hu, Z.D., Yan, W.C., Dunn, J., Nilsen, J., Hunter, J., Liu, Y., Wang, X., Chen, L.M., Ma, J.L., Lu, X., Jin, Z., Kodama, R., Sheng, Z.M. & Zhang, J. (2015). Bursts of terahertz radiation from large-scale plasmas irradiated by relativistic picosecond laser pulses. Phys. Rev. Lett. 114, 255001/1-5.CrossRefGoogle ScholarPubMed
Liu, H.B., Chen, Y., Bastiaans, G.J. & Zhang, X.-C. (2006). Detection and identification of explosive RDX by THz reflection spectroscopy. Opt. Express 14, 415423.CrossRefGoogle Scholar
Matsuura, S., Tani, M. & Sakai, K. (1997). Generation of coherent terahertz radiation by photomixing in dipole photoconductive antennas. Appl. Phys. Lett. 70, 559561.CrossRefGoogle Scholar
Nakagawa, M., Kodama, R., Higashiguchi, T. & Yugami, N. (2009). Generation of terahertz radiation via an electromagnetically induced transparency at ion acoustic frequency region in laser-produced dense plasmas. Phys. Rev. E 80, 025402 R/1-4.CrossRefGoogle ScholarPubMed
Nishizawa, J., Sasaki, T., Suto, K., Yamada, T., Tanabe, T., Tanno, T., Sawai, T. & Miura, Y. (2005). THz imaging of nucleobases and cancerous tissue using a GaP THz-wave generator. Opt. Commun. 244, 469474.CrossRefGoogle Scholar
Scheller, M. (2011). Real-time terahertz material characterization by numerical three-dimensional optimization. Opt. Express 19, 1064710655.CrossRefGoogle ScholarPubMed
Shen, Y.C., Upadhya, P.C., Beere, H.E. & Linfield, E.H. (2004). Generation and detection of ultrabroadband terahertz radiation using photoconductive emitters and receivers. Appl. Phys. Lett. 84, 164166.CrossRefGoogle Scholar
Sheng, Z.M., Mima, K., Zhang, J. & Sanuki, H. (2005). Emission of electromagnetic pulses from laser wakefields through linear mode conversion. Phys. Rev. Lett. 94, 095003/1-4.CrossRefGoogle ScholarPubMed
Strachan, C.J., Taday, P.F., Newnham, D.A., Gordon, K.C., Zeitler, J.A., Pepper, M. & Rades, T. (2005). Using terahertz pulsed spectroscopy to quantify pharmaceutical polymorphism and crystallinity. J. Pharm. Sci. 94, 837846.CrossRefGoogle ScholarPubMed
Varshney, P., Sajal, V., Singh, K.P., Kumar, R. & Sharma, N.K. (2013). Strong terahertz radiation generation by beating of extra-ordinary mode lasers in a rippled density magnetized plasma. Laser Part. Beams 31, 337341.CrossRefGoogle Scholar
Verboncoer, J.P., Langdon, A.B. & Gladd, N.T. (1995). An object-oriented electromagnetic PIC code. Comput. Phys. Commun. 87, 199211.CrossRefGoogle Scholar
Vvedenskii, N.V., Korytin, A.I., Kostin, V.A., Murzanev, A.A., Silaev, A.A. & Stepanov, A.N. (2014). Two-color laser-plasma generation of terahertz radiation using a frequency-tunable half harmonic of a femtosecond pulse. Phys. Rev. Lett. 112, 055004/1-5.CrossRefGoogle ScholarPubMed
Wang, W.-M., Gibbon, P., Sheng, Z.-M. &. LI, Y.-T. (2015). Tunable circularly polarized terahertz radiation from magnetized gas plasma. Phys. Rev. Lett. 114, 253901/1-5.CrossRefGoogle Scholar
Wang, W.-M., Kawata, S., Sheng, J.M., Li, Y.-T. & Zhang, J. (2011). Towards gigawatt terahertz emission by few-cycle laser pulses. Phys. Plasmas 18, 073108/1-6.CrossRefGoogle Scholar
You, Y.S., Oh, T.I. & Kim, K.Y. (2012). Off-axis phase-matched terahertz emission from two-color laser-induced plasma filaments. Phys. Rev. Lett. 109, 183902/1-5.CrossRefGoogle ScholarPubMed
Zhang, X.C., Hu, B.B., Darrow, J.T. & Auston, D.H. (1990). Generation of femtosecond electromagnetic pulses from semiconductor surfaces. Appl. Phys. Lett. 56, 1011.CrossRefGoogle Scholar