Profile

Dr. Mazhar Kalyar has done PhD from Quaid-i-Azam University, Islamabad, Pakistan and Post doctorate from University of Bristol UK. Previously, he served as Lecturer at GC University Faisalabad.

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Education

Year Degree Board / University
2013 Post-Doctorate -- (Post Doctorate) University of Bristol UK
2009 Ph D -- (Doctorate Degree) Quaid-i-Azam University Islamabad
1995 M. Sc (Physics) -- (Master (16 Years) Degree) University of Punjab Lahore
1991 B. Sc -- (Bachelor (14 Years) Degree) University of Punjab Lahore
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Experience

From To Post Held Organization
2008 2010 Lecturer GC University
2010 2018 Assistant Professor University of Sargodha
2018 2023 Associate Professor University of Sargodha
2023 Continue Professor University of Sargodha
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Research Interests

Laser Matter Interaction
Laser Spectrscopy
Laser Produced Plasma Diagnostics
Laser Induced Breakdown Spectroscopy
Pulsed Laser Deposition

Fellowships

• Post-Doctoral fellowship Batch V offered by HEC
* Indigenous scholarship for Ph. D offered by HEC

Publications

    Research Journal


  • Muhammad Nawaz Rizwan, Mazhar Ali Kalyar, Muhammad Anwar ul Haq, Chris Bell, Ata ur Rehman Makhdoom , 2022 , Influence of growth temperature on microstructural and electro magnetic properties of nickel thin films , Surface and Interface Analysis , 55, , Web Link : DOI: 10.1002/sia.7175
  • M. N. Rizwan, C. Bell, M. A. Kalyar, A. R. Makhdoom, A. Ul Haq, E. Gilory , 2021 , Structural, magnetic and electrical properties of nickelthin films deposited on Si(100) substrates by pulsed laser deposition , Journal of Ovonic Research , 17,
  • M. Nawaz Rizwan, M. A. Kalyar, C. Bell, M. Anwar-ul-Haq and A. R. Makhdoom , 2020 , Nickel thin films grown by pulsed laser deposition: influence of substrate and substrate temperature , Digest Journal of Nanomaterials and Biostructures , 15,
  • M Sher Afgan, M Anwar-ul-Haq, S U Haq, M A Kalyar and M A Baig , 2019 , Spectroscopic investigations of the laser induced thallium plasma , Laser Physics , 29,
  • M. A. Kalyar, M. Anwar-ul Haq, J. P. Connerade and M. A. Baig , 2018 , On the perturbation of the 6snd 1,3D2 series by the 5d7d 1D2 state of barium , Laser Physics , 28,
  • Muhammad Aslam, Mazhar Ali Kalyar and Zulfiqar Ali Raza , 2017 , Fabrication of reduced graphene oxide nanosheets doped PVA composite films for tailoring their opto-mechanical properties. , Applied Physics A , 123,
  • M. A. Kalyar, A. Yar, J. Iqbal, R. Ali and M. A. Baig , 2015 , Measurements of photoionization cross section of the 4p levels and oscillator strength of the 4p-nd 2D3/2,5/2 transitions of potassium , Optics & Laser Technology , 77,
  • Peng Huang, M. Mazhar Ali Kalyar, Richard Webster, David Cherns and Mike N R Ashfold , 2014 , Tungsten oxide nanorod growth by pulsed laser deposition: influence of substrate and process conditions , Nanoscale , 6,
  • M. A. Baig, I. A. Bokhari, M. Rafiq, M. A. Kalyar, T. Hussian, and Raheel Ali , 2011 , Photoexcitation and photoionization from the 2p53p[5/2]2,3 levels in neon , Physical Review A , 84,
  • M A Kalyar, M Rafiq and M A Baig , 2009 , Interaction of the 6p2 1S0 broad resonance with 5dnd J = 0 autoionizing resonances in barium , Physical Review A , 80,
  • Nek. M. Shaikh, S. Hafeez, M A Kalyar, R. Ali and M.A. Baig , 2008 , Spectroscopic characterization of Laser ablation brass plasma , Journal of Applied Physics , 104,
  • M A Kalyar, M Rafiq and M A Baig , 2007 , Experimental studies of the oscillator strengths of the 6s6p 1,3P1  6snd 1,3D2 Rydberg transitions in barium , J. Phys. B: At. Mol. Opt. Phys , 40,
  • M A Kalyar, M. Rafiq, Sami-ul-Haq and M A Baig , 2007 , Absolute Photoionization Cross Section Measurement from the 6s6p 1,3P1 excited states of barium , J. Phys. B: At. Mol. Opt. Phys , 40,
  • M A Kalyar, S Mahmood, Sami-ul-Haq, N Amin and M A Baig , 2006 , Line shape parameters Study of the 6p7p (1P1, 3D1 and 3P1) Autoionizing Resonances in Barium , European Physical Journal , 41,
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Projects

Type Sub-type Title From To Role
Research Final Project Establishing a Pulsed Laser Deposition facility and the growth of crystalline thin films and their characterizations 2012 2020 Co Principal Investigator
Research Final Project Establishing a resistivity measurement setup for characterization of thin films grown by Pulsed Laser Deposition 2018 2020 Principal Investigator
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