Dr. Aurangzeb  Khurram Hafiz

Dr. Aurangzeb Khurram Hafiz

Associate Professor
Jamia Millia Islamia, New Delhi, India


Highest Degree
Ph.D. in Physical Sciences from Jawaharlal Nehru Agricultural University, Jabalpur, Madhya Pradesh, India

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Area of Interest:

Physical Science Engineering
100%
Laser Physics
62%
Nanoscience
90%
Quantum Electronics
75%
Nonlinear Waves
55%

Selected Publications

  1. Rani, P., R.S. Meena, A.K. Hafiz and V.P.S. Awana, 2017. Magnetic susceptibility and high field magneto-transport of silver-added Bi-2223 superconductor: A revisit. J. Superconduct. Novel Magn., 30: 1737-1747.
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  2. Zargar, R.A., S. Chackrabarti, M. Arora and A.K. Hafiz, 2016. Synthesis, characterization and interpretation of screen-printed nanocrystalline CdO thick film for optoelectronic applications. Int. Nano Lett., 6: 99-104.
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  3. Zargar, R.A., M.A. Bhat, I.R. Parrey, M. Arora, J. Kumar and A.K. Hafiz, 2016. Optical properties of ZnO/SnO2 composite coated film. Optik-Int. J. Light Electron Opt., 127: 6997-7001.
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  4. Zargar, R.A., M. Arora, S. Chackrabarti, S. Ahmad, J. Kumar and A.K. Hafiz, 2016. Alcohol vapor sensing by cadmium-doped zinc oxide thick films based chemical sensor. Mod. Phys. Lett. B, Vol. 30, No. 12. 10.1142/S0217984916502444.
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  5. Sultana, R., P. Rani, A.K. Hafiz, R. Goyal and V.P.S. Awana, 2016. An intercomparison of the upper critical fields (Hc2) of different superconductors-YBa2Cu3O7, MgB2, NdFeAsO0.8F0.2, FeSe0.5Te0.5 and Nb2PdS5. J. Superconduct. Novel Magn., 29: 1399-1404.
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  6. Rani, P., A.K. Hafiz and V.P.S. Awana, 2016. Improvement in granularity of NdFeAsO0.8F0.2 superconductor through Agx doping (x = 0.0-0.3). Phys. C: Superconduct. Applic., 520: 1-7.
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  7. Joseph, S., M.S. Khan and A.K. Hafiz, 2016. Compression of ultra-short pulses due to cascaded second order nonlinearities in photonic bandgap structures. Eur. Phys. J. D, Vol. 70, No. 3. 10.1140/epjd/e2016-60442-1.
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  8. Hafiz, A.K., 2016. Study of some Coherent Nonlinear Optical Interactions. Lambert Academic Publishing, Germany, ISBN: 978-3-659-96848-8, Pages: 132.
  9. Chackrabarti, S., R.A. Zargar, S. Joseph, M. Arora, A. Aziz and A.K. Hafiz, 2016. Realization of structural and optical properties of CdZnO composite coated films for photovoltaic cell applications. Optik-Int. J. Light Electron Opt., 127: 9966-9973.
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  10. Chackrabarti, S., R.A. Zargar, J. Bansal, T.A. Zaker and A.K. Hafiz, 2016. Realization of band gap shrinkage to the spectral characteristics of high-luminous-efficiency 658 nm AlGaInP/GaInP multiple quantum well lasers at room temperatures. Opt. Mater., 58: 426-431.
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  11. Chackrabarti, S., R.A. Zargar, D. Ali, M. Arora, A. Aziz and A.K. Hafiz, 2016. Investigation on the physical properties of Zn0.94Cu0.06O coated film. Optik-Int. J. Light Electron Opt., 127: 2911-2913.
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  12. Chackrabarti, S., R.A. Zargar, A. Aziz and A.K. Hafiz, 2016. Structural and optical characteristics of transparent conducting yttrium doped ZnO films using screen printing technology. J. Mater. Sci.: Mater. Electron., 27: 5271-5276.
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  13. Chackrabarti, S., D. Sharma, S. Joseph, T.A.A. Zaker, A.K. Hafiz and R. Kafle, 2016. Experimental study on the mechanism governing spectral shifts in low power 670 nm AlGaInP Multiple Quantum Well (MQW) laser diodes over temperature range 5-45°C. Can. J. Phys., 94: 640-644.
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  14. Zargar, R.A., S. Chackrabarti, S. Joseph, M.S. Khan, R. Husain and A.K. Hafiz, 2015. Synthesis and characterization of screen printed ZnO films for solar cell applications. Optik-Int. J. Light Electron Opt., 126: 4171-4174.
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  15. Zargar, R.A., S. Chackrabarti, M. Shahabuddin, J. Kumar, M. Arora and A.K. Hafiz, 2015. Novel composites of Zn1-xCdxO (x = 0, 0.05, 0.1) thick films for optoelectronic device application. J. Mater. Sci.: Mater. Electron., 26: 10027-10033.
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  16. Zargar, R.A., M. Arora, M. Ahmad and A.K. Hafiz, 2015. Synthesis and characterization of vanadium doped zinc oxide thick film for chemical sensor application. J. Mater., Vol. 2015. 10.1155/2015/196545.
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  17. Zargar, R.A., M. Arora and A.K. Hafiz, 2015. Investigation of physical properties of screen printed nanosized ZnO films for optoelectronic applications. Eur. Phys. J. Applied Phys., Vol. 70, No. 1. 10.1051/epjap/2015150019.
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  18. Zargar, R.A., S.U.D. Khan, M.S. Khan, M. Arora and A.K. Hafiz, 2014. Synthesis and characterization of screen printed Zn0.97Cu0.03O thick film for semiconductor device applications. Phys. Res. Int. 10.1155/2014/464809.
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  19. Zargar, R.A., A. Pal, A.K. Hafiz and V.P.S. Awana, 2014. Structural, electrical and magnetic behaviour of FeTe0.5Se0.5 superconductor. J. Superconduct. Novel Magn., 27: 897-901.
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  20. Joseph, S., M.S. Khan and A.K. Hafiz, 2014. Parameters for efficient growth of second harmonic field in nonlinear photonic crystals. Phys. Lett. A, 378: 1296-1302.
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  21. Joseph, S. and A.K. Hafiz, 2014. Omnidirectional reflector using one-dimensional dispersive photonic heterostructure. Optik-Int. J. Light Electron Opt., 125: 2734-2738.
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  22. Jha, R., R.A. Zargar, A.K. Hafiz, H. Kishan and V.P.S. Awana, 2014. Superconductivity at 25 K under hydrostatic pressure for FeTe0.5Se0.5 superconductor. J. Superconduct. Novel Magn., 27: 1599-1602.
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  23. Zaker, T.A.A. and A.K. Hafiz, 2011. Influence of magnetic field on the threshold current, temperature characteristics and on the output power in AlGaInP multiple quantum well laser. Applied Phys. Res., 3: 143-151.
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  24. Zaker, T.A., F.S. Mohammed and A.K. Hafiz, 2011. Construction of a stabilized diode laser system. Int. J. Innov. Adv. Sci. Technol. Res., 1: 6-14.
  25. Mohammed, F.S. and A.K. Hafiz, 2011. Strange behavior in semiconductor laser subjected to optical feedback at different temperatures. Can. J. Pure Applied Sci., 5: 1533-1540.
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  26. Hafiz, A.K. and B. Agrawal, 2011. A low cost novel technique to suppress the vibrations of a cutting tool. Int. J. Innov. Adv. Sci. Technol. Res., 1: 69-76.
  27. Hafiz, A.K. and R. Ghosh, 2006. Reflection and transmission spectra for ultrashort pulse propagation in a one-dimensional nonlinear photonic crystal. J. Opt. Soc. Am. B, 23: 1091-1098.
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  28. Hafiz, A.K. and R. Ghosh, 2004. Theory of the fundamental linewidth of a two-mode laser. J. Opt. B: Quantum Semiclassical Opt., 6: 276-282.
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