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Research Article

Density gradient driven instability in an E→×B→ plasma system having temperature gradients

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 725-731 | Received 27 Aug 2021, Accepted 18 Jul 2022, Published online: 09 Aug 2022

References

  • Boeuf JP. Tutorial: physics and modeling of Hall thrusters. J Appl Phys. 2017 Jan 7;121(1):011101.
  • Choueiri EY. Plasma oscillations in Hall thrusters. Phys Plasmas. 2001 Apr;8(4):1411–1426.
  • Zhurin VV, Kaufman HR, Robinson RS. Physics of closed drift thrusters. Plasma Sources Sci Technol. 1999 Feb 1;8(1):R1.
  • Goebel DM, Katz I. Fundamentals of electric propulsion: ion and Hall thrusters. California Institute of Technology; 2008 Dec 22.
  • Keidar M, Boyd ID. Effect of a magnetic field on the plasma plume from Hall thrusters. J Appl Phys. 1999 Nov 1;86(9):4786–4791.
  • Malik HK, Tyagi J, Sharma D. Growth of Rayleigh instability in a Hall thruster channel having dust in exit region. AIP Adv. 2019 May 23;9(5):055220.
  • Lafleur T, Baalrud SD, Chabert P. Characteristics and transport effects of the electron drift instability in Hall-effect thrusters. Plasma Sources Sci Technol. 2017 Jan 31;26(2):024008.
  • Lazurenko A, Krasnoselskikh V, Bouchoule A. Experimental insights into high-frequency instabilities and related anomalous electron transport in Hall thrusters. IEEE Trans Plasma Sci. 2008 Oct 28;36(5):1977–1988.
  • Litvak AA, Fisch NJ. Rayleigh instability in Hall thrusters. Phys Plasmas. 2004 Apr 26;11(4):1379–1383.
  • Chable S, Rogier F. Numerical investigation and modeling of stationary plasma thruster low frequency oscillations. Phys Plasmas. 2005 Mar 10;12(3):033504.
  • Malik HK, Singh S. Conditions and growth rate of Rayleigh instability in a Hall thruster under the effect of ion temperature. Physical Review E. 2011 Mar 15;83(3):036406.
  • Hepner ST, Jorns B. The role of low frequency drift waves in driving non-classical transport in magnetic nozzles. InAIAA Propulsion and Energy 2020 Forum 2020 (p. 3644).
  • Tsikata S, Cavalier J, Héron A, et al. An axially propagating two-stream instability in the Hall thruster plasma. Phys Plasmas. 2014 Jul 17;21(7):072116.
  • Tyagi J, Singh S, Malik HK. Effect of dust on tilted electrostatic resistive instability in a Hall thruster. J. Theoretical Appl. Phys. 2018 Mar;12(1):39–43.
  • Barral S, Ahedo E. Low-frequency model of breathing oscillations in Hall discharges. Phys Rev E. 2009 Apr 1;79(4):046401.
  • Barral S, Peradzyński Z. Ionization oscillations in Hall accelerators. Phys Plasmas. 2010 Jan 13;17(1):014505.
  • Meezan NB, Hargus Jr WA, Cappelli MA. Anomalous electron mobility in a coaxial Hall discharge plasma. Phys Rev E. 2001 Jan 24;63(2):026410.
  • Thomas CA, Gascon N, Cappelli MA. Nonintrusive characterization of the azimuthal drift current in a coaxial E× B discharge plasma. Phys Rev E. 2006 Nov 15;74(5):056402.
  • Kapulkin A, Guelman MM. Low-frequency instability in near-anode region of Hall thruster. IEEE Trans Plasma Sci. 2008 Nov 17;36(5):2082–2087.
  • Sedighi HM, Ouakad HM, Dimitri R, et al. Stress-driven nonlocal elasticity for the instability analysis of fluid-conveying C-BN hybrid-nanotube in a magneto-thermal environment. Phys Scr. 2020 Apr 6;95(6):065204.
  • Sedighi HM, Malikan M. Stress-driven nonlocal elasticity for nonlinear vibration characteristics of carbon/boron-nitride hetero-nanotube subject to magneto-thermal environment. Phys Scr. 2020 Mar 5;95(5):055218.
  • Makinde OD, Adesanya SO, Ferdows M. A note on the hydromagnetic blasius flow with variable thermal conductivity. J Appl Comput Mech. 2020 Mar 30;7(4):1925–1930.
  • Khurana M, Rana P, Srivastava S, et al. Magneto-bio-thermal convection in rotating nanoliquid containing gyrotactic microorganism. J Appl Comput Mech. 2021 Oct 1;7(4):1973–1986.
  • Malik L, Kumar M, Singh IV. A three-coil setup for controlled divergence in magnetic nozzle. IEEE Trans Plasma Sci. 2021 Jun 25;49(7):2227–2237.
  • Dhawan R, Malik HK. Sheath formation criterion in collisional electronegative warm plasma. Vacuum. 2020 Jul 1;177:109354.
  • Dhawan R, Malik HK. Behaviour of sheath in electronegative warm plasma. J Theoret Appl Phys. 2020 Jun;14(2):121–128.
  • Dhawan R, Malik HK. Sheath characteristics in plasma carrying finite mass negative ions and ionization at low frequency. Chin J Phys. 2020 Aug 1;66:560–572.
  • Dhawan R, Kumar M, Malik HK. Influence of ionization on sheath structure in electropositive warm plasma carrying two-temperature electrons with non-extensive distribution. Phys Plasmas. 2020 Jun 15;27(6):063515.
  • Malik L, Tevatia A. Comparative analysis of aerodynamic characteristics of F16 and F22 combat aircraft using computational fluid dynamics. Def Sci J. 2021 Mar 1;71(2):137–145.
  • Malik L, Rawat S, Kumar M, et al. Simulation studies on aerodynamic features of eurofighter typhoon and dassault rafale combat aircraft. Mater Today: Proc. 2021 Jan 1;38:191–197.
  • Pachauri S, Chaudhary J, Misra KP. Instabilities in magnetized inhomogeneous dusty plasmas with the effect of recombination. Plasma Res Exp. 2022 May 23;4(2):025004.
  • Tyagi J, Sharma D, Malik HK. Discussion on Rayleigh equation obtained for a Hall thruster plasma with dust. J Theoret Appl Phys. 2018 Sep;12(3):227–233.
  • Malik L. Tapered coils system for space propulsion with enhanced thrust: A concept of plasma detachment. Propulsion Power Res. 2022 Jun 1;11(2):171–180.
  • Shul RJ, McClellan GB, Casalnuovo SA, et al. Inductively coupled plasma etching of GaN. Appl Phys Lett. 1996 Aug 19;69(8):1119–1121.
  • Parker ER, Thibeault BJ, Aimi MF, et al. Inductively coupled plasma etching of bulk titanium for MEMS applications. J Electrochem Soc. 2005 Aug 12;152(10):C675.
  • Rawal DS, Malik HK, Agarwal VR, et al. BCl3/Cl2-based inductively coupled plasma etching of GaN/AlGaN using photoresist mask. IEEE Trans Plasma Sci. 2012 Aug 6;40(9):2211–2220.
  • Li J, Kim SJ, Han S, et al. Characterization of sp2/sp3 hybridization ratios of hydrogenated amorphous carbon films deposited in C2H2 inductively coupled plasmas. Surf Coat Technol. 2021 Sep 25;422:127514.
  • Kumar S, Malik A, Rawal DS, et al. Performance analysis of GaN/AlGaN HEMTs passivation using inductively coupled plasma chemical vapour deposition and plasma enhanced chemical vapour deposition techniques. Def Sci J. 2018 Nov 1;68(6):572–576.
  • Kumar S, Rawal DS, Malik HK, et al. Memory effect in silicon nitride deposition using ICPCVD technique. J Theoret Appl Phys. 2019 Dec;13(4):299–304.