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Dr. Farah Aziz

Assistant Professor
Research Interests: Analytical Modelling and Simulations of Nonlinear Waves and Solitons in Nonlinear Transmission Lines (NLTLs) and Plasma.

Education

  • PhD in Physics, Institute Of Plasma Physics, University Of Stuttgart (Stuttgart, Germany) 2011
  • MS/MPhil in Physics, Department Of Physics, GCU Lahore (Lahore, Pakistan) 2006
  • Masters in Physics, Department Of Physics, GCU Lahore (Lahore, Pakistan) 2000
  • BA/BSc(Hons) in Physics, Math A, Math B, Lahore College For Women (Lahore, Pakistan) 1998

Teaching Areas

PhD: Nonlinear waves and instabilities in plasma, Advanced topics in nonlinear physics
MPhil: Nonlinear Physics, Advanced Electromagnetic Theory
BSc: Waves and Oscillations, Electricity and Magnetism

Journal Papers

  • Farah Aziz, MM Shoaib Idrees, Ali Asif, Fatima Bint-e-Munir, Abdul Sami (2025). "Soliton generation under ambient charge variation." Chaos, Solitons & Fractals , Vol. 201 , pp. 117414. DOI: 10.1016/j.chaos.2025.117414 | Impact Factor: 5.6 [Link]
  • Abdul Sami, Ali Asif, Muhammad Imran, Farah Aziz, Muhammad Yasir Noor (2023). "Artificial neural network and dataset optimization for implementation of linear system models in resource‐constrained embedded systems." Expert Systems , Vol. 40 (1) , pp. e13142. DOI: 10.1111/exsy.13142 | Impact Factor: 2.3 [Link]
  • Amir Ali, Ali Asif, Gui Yun Tian, Farah Aziz and Muhammad Zain Ul Abdin (2023). "Directly-digitized pulsed eddy current based quantification of aluminum sheet thickness." Measurement Science and Technology , Vol. 34 , pp. 125902. DOI: 10.1088/1361-6501/ace989 | Impact Factor: 3.4 [Link]
  • Hamza Abrar, Syeda Noureen, Farah Aziz (2023). "Effect of relativistic ponderomotive force on shock waves in a relativistic degenerate plasma." Zeitschrift Fur Naturforschung Section A Journal of Physical Sciences , Vol. 78 (9) , pp. 791-800. DOI: 10.1515/zna-2023-0064 | Impact Factor: 1.3 [Link]
  • Muhammad Zain Ul Abdin, Abdul Sami, Ali Asif, Farah Aziz (2023). "Performance evaluation of linearization strategies for a directly interfaced thermistor." Measurement Science and Technology , Vol. 34 (12) , pp. 125127. DOI: 10.1088/1361-6501/acf38e | Impact Factor: 3.4 [Link]
  • Farah Aziz, Ali Asif, Fatima Bint-e-Munir (2020). "Analytical modeling of electrical solitons in a nonlinear transmission line using Schamel–Korteweg deVries equation." Chaos, Solitons and Fractals , Vol. 134 , pp. 109737. DOI: 10.1016/j.chaos.2020.109737 | Impact Factor: 5.6 [Link]
  • Farah Aziz, Hitendra K Malik, Sebastian Enge, Lars Stollenwerk and Ulrich Stroth (2011). "Experimental and simulation studies on soliton generation in a double-plasma device: Role of fast ions." Plasma Physics and Controlled Fusion , Vol. 53 , pp. 065012. DOI: 10.1088/0741-3335/53/6/065012 | Impact Factor: 2.3 [Link]
  • Farah Aziz, Hitendra K Malik, Ulrich Stroth (2011). "Soliton propagation, reflection, and transmission in an inhomogeneous plasma with trapped electrons." Physics of Plasmas , Vol. 18 (4) . DOI: 10.1063/1.3571623 | Impact Factor: 2.3 [Link]
  • Muhammad Zakria Butt, Farah Aziz, Dilawar Ali (2010). "Correlation between the temperature dependence of yield stress and the nature of solute distribution in Cu-Ni solid solutions." Journal of alloys and compounds , Vol. 498 (1) , pp. 102/106. DOI: 10.1016/j.jallcom.2010.03.122 [Link]
  • Farah Aziz, Hitendra K Malik, Ulrich Stroth (2010). "Oblique reflection of solitons in an inhomogeneous plasma: Effect of trapped electrons." IEEE transactions on plasma science , Vol. 38 (10) , pp. 2802-2811. DOI: 10.1109/TPS.2010.2060366 | Impact Factor: 1.5 [Link]
  • Farah Aziz, Ulrich Stroth (2009). "Effect of trapped electrons on soliton propagation in a plasma having a density gradient." Physics of Plasmas , Vol. 16 , pp. 032108. DOI: 10.1063/1.3091934 | Impact Factor: 2.3 [Link]
  • MZ Butt, F Aziz (2007). "Effect of heterogeneous solute distribution on the anomalous thermomechanical response of Cu–Ni alloy single crystals below 50 K." Philosophical Magazine Letters , Vol. 87 (12) . DOI: 10.1080/09500830701576312 | Impact Factor: 1.1 [Link]