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On the two possible types of THz generators

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Języki publikacji
EN
Abstrakty
EN
This paper is the review of our study published earlier in Acta Phys. Polon. A121, 522 (2012) [7],Phys Lett A378, 1364 (2014) [25],and [1]. It’s aim is to pay attention to the new possibilities related to producing the new types of THz generators. The suggested effects are the result of combining two effects: Gunn-effect in a material such as GaAs and undulator-like radiation, or "pumping wave" acting on the electrons which is the result of undulator field, while the second is the backward effect of radiation which is produced by electrons moving within such a micro-undulator. It is very probable that the effect scan be used to develop a new semiconductor-based room temperature source of the THz-radiation.
Czasopismo
Rocznik
Strony
11--32
Opis fizyczny
Bibliogr. 25 poz., rys.
Twórcy
autor
  • Institute of Physics, College of Natural Sciences, University of Rzeszów, Poland
  • Energy Business Intelligence System, Rzeszów, Poland
Bibliografia
  • [1] P. Zięba, Active and Passive Elements of GHz and THz -Microelectronics and Optics. PhD Thesis (in Polish) University of Rzeszow, 2015.
  • [2] A.G. Davies, A.D. Burnett, E.H. Linfield, W. Fan, J.E. Cunningham, Terahertz spectroscopy of explosives and drugs, Materials Today 11, 18 (2008).
  • [3] Yun-Shik Lee, Principles of Terahertz Science and Technology, (Springer Science, New York, 2009); B.S. Alexandrov, V. Gelev, A.R. Bishop, A. Usheva, K.O. Rasmussen, DNA breathing dynamics in the presence of terahertz field, Phys.Lett.A374,1214 (2010).
  • [4] D. Dragoman, M. Dragoman, Terahertz fields and applications, Progress in Quant. Electr. 28, 1 (2004).
  • [5] J.D. Jackson. Classical electrodynamics. John Willey, 1999.
  • [6] H. Jeffreys, B. Swirles, Methods of Mathematical Physics, 3rd ed., Cambridge University Press, Cambridge 1966.
  • [7] I. Tralle, P. Zięba, Undulator-like radiation and cooperative phenomenon in semiconductor microstructure with grating, Acta Phys. Polon. A 121, 520 (2012)
  • [8] L.I. Schiff, Rev. Sci. Instrum. 17, 6 (1946).
  • [9] P. Meystre, M. Sargent, III, Elements of Quantum Optics, Springer-Verlag, Berlin 2007.
  • [10] S.Y. Chou, D.R. Allee, R.F. Pease and J.S. Jr. Harris, Observation of electron resonant tunneling in a lateral dual-gate resonant tunneling field effect transistor. Appl. Phys. Lett, 55, 176 (1989).
  • [11] W.E. Lamb, Theory of an Optical Maser. Phys. Rev.134, A1429 (1964).
  • [12] M. Scully, W.E. Lamb, Quantum Theory of an Optical Maser. Phys. Rev. Lett. 16, 853 (1966).
  • [13] M. Scully, W.E. Lamb, Quantum Theory of and Optical Maser. I. General Theory. Phys. Rev. 159, 208 (1967).
  • [14] M. Borenstein, W.E. Lamb Jr., Classical Laser. Phys. Rev. A 5, 1298 (1972).
  • [15] N.W. McLachlan, Ordinary Non-linear Differential Equations in Engineering and Physical Sciences, Clarendon Press, Oxford 1950.
  • [16] R.H. Dicke, Coherence in spontaneous radiation processes, Phys. Rev. 93 99 (1954).
  • [17] L. Allen, J. Eberly, OpticalResonanceandTwo-LevelAtoms,Wiley,NY,1975.
  • [18] F.T. Arecchi, E. Courtens, Cooperative phenomena in resonant electromagnetic propagation ,Phys. Rev. A 2 1730(1970).
  • [19] R. Bonifacio, R. Schwendiman, Quantum statistical theory of superradiance I, Phys. Rev. A 4302 (1971).
  • [20] R. Bonifacio, R. Schwendiman, F. Haake, Quantum statistical theory of superradiance, Phys.Rev.A4854 (1971).
  • [21] M. Gross, P. Goy, C .Fabre, S. Haroche, J.M. Raimond, Maser oscillations and microwave superradiance in small systems of Rydberg atoms, Phys. Rev. Lett. 43343-346 (1979); L. Moi, P. Goy, J. M. Raimond, C. Fabre, S. Haroche, Rydberg-atom masers. Atheoretical and experimental study of super-radiant systems in the milli-meter-wave domain, Phys. Rev. A272043 (1983).
  • [22] L. I. Men’shikov, Superradiation and related phenomena, Phys. Usp. 42 107 (1999).
  • [23] S. Strogatz, From Kuramoto to Crawford: exploring the onset of synchronization in populations of coupled oscillators, Physica D 143 1 (2000).
  • [24] J.A. Acebron, L.L. Bonilla, Conrad J. Perez Vicente, Felix Ritort, R. Spigler, The Kuramoto model: a simple paradigm for synchronization phenomena, Rev. Mod .Phys. 77 137 (2005);A. Pikovsky, M. Rosenbluth, and J. Kurths, Synchronization. A Universal Concept in Nonlinear Science. Cambr. Univ. Press, 2001.
  • [25] I. Tralle, P. Zięba,Induced N2-cooperative phenomenon in an ensemble of the non-linear coupled oscillators, Phys. Lett. A 378, 1364 (2014).
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2991f7c1-d8f5-4fb5-a12f-dde5840ca804
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