Department of Physics


Faculty Memeber: Prof Sh Dorendrajit Singh



Profile

Designation
Professor
Specialization
Condensed Matter Physics, Luminescence in Solid, Nano Materials
email
Highest Degree
M Sc, PhD
Honours/Awards
Research Projects
Research Papers
30+




A Brief Introduction
Professor S Dorendrajit Singh got his M Sc Degree from Banaras Hindu University, Varanasi in the year 1980, He became Lecturer in Physics at Manipur College, Imphal in the year 1980. Then shifted to Government Polytechnic , Takyel, Imphal in the year 1981.

He Joined Physics Department, Manipur University as an Assistant Professor in the year 1985. At present he is serving as Professor.

He is a Life Member of Luminescence Society of India (LSI), Material Research Society. He is also on the Advisory Board Member of JBNSTS, Kolkata.

Research Papers
  • Lifetime and quantum yield studies of Dy3+ doped GdVO4 nanoparticles: Concentration and annealing effect.
    N. Shanta Singh, R. S. Ningthoujam, N. Yaiphaba, S. Dorendrajit Singh, and R. K. Vatsa.
    J. Appl. Phys. 105, 064303 (2009).
  • Luminescence, lifetime and quantum yield studies of YVO4:Ln3+ (Ln3+ = Dy3+, Eu3+) nanoparticles: Concentration and annealing effects.
    N. Shanta Singh, R.S. Ningthoujam, M. Niraj Luwang, S. Dorendrajit Singh, and R.K. Vatsa.
    Chemical Physics Letters, 480, 4-6, 237-242, (2009).
  • Energy transfer process and optimum emission studies in luminescence of core–shell nanoparticles: YVO4:Eu–YVO4 and surface state analysis.
    R.S. Ningthoujama, L. Robindro Singh, V. Sudarsan and S. Dorendrajit Singh.
    Journal of Alloys and Compounds, 484, 1-2, 782-789, (2009).
  • Luminescence study of Eu3+ doped GdVO4 nanoparticles: Concentration, particle size, and core/shell effects
    N. Shanta Singh, R. S. Ningthoujam, L. Romila Devi, N. Yaiphaba, V. Sudarsan, S. Dorendrajit Singh, R. K. Vatsa, and R. Tewari
    J. Appl. Phys. 104, 104307 (2008).
  • Luminescence study on Eu3+ doped Y2O3 nanoparticles: particle size, concentration and core–shell formation effects.
    L Robindro Singh, R S Ningthoujam, V Sudarsan, Iti Srivastava, S Dorendrajit Singh, G K Dey and S K Kulshreshtha
    Nanotechnology 19 055201 (8pp), (2008).
  • On the Glow Curve Shape and the Plateau Test. The Case of Second-Order Kinetics.
    R. K. Gartia, S. Dorendrajit Singh.
    Physica status solidi (a), 132, 1, 197 - 204, (2006)
  • Experimental evidence of variation of glow peak shape with dose and its consequences. The case of second-order kinetics.
    R. K. Gartia, S. Ingotombi, S. Dorendrajit Singh.
    Physica status solidi (a), 148, 1, 303 - 309 (2006)
  • On the analysis of the ionic thermocurrent data.
    R. K. Gartia, S. Dorendrajit Singh, E. Dwijamani Singh, N. C. Deb, P. S. Mazumdar.
    Publish in: physica status solidi (a), 150, 2, 749 - 753, (2006).
  • On the glow curve shape and plateau test. The case of non-first-order kinetics.
    R. K. Gartia, S. Dorendrajit Singh, P. S. Mazumdar.
    Physica status solidi (a) Volume 138 1, 319 - 326 (2006).
  • Thermoluminescence of NaCl and NaCl: Rb.
    Dorendrajit Singh S. ; Shambunath Singh W. ; Mazudar P. S.
    IACS, Calcutta, INDE (1977), 77, 5, 499-502, (2003).
  • On the analysis of derivative thermoluminescence and derivative differential thermal analysis curves.
    S Dorendrajit Singh.
    Indian Journal of Physics and Proceedings of the IACS, 73 A, 4, (1999).
  • The determination of the trapping parameters of a thermoluminescence peak by using the Kirsh method.
    S Dorendrajit Singh, P S Mazumdar, R K Gartia and N C Deb.
    J. Phys. D: Appl. Phys. 31 231-234, (1998).
  • Evaluation of the activation energy from derivative temperature-programmed desorption curves.
    S. Dorendrajit Singh, Manabesh Bhattacharya, W. G. Devi, A. K. Manihar Singh and P. S. Mazumdar.
    Thermochimica Acta, 322, 1, 47-55, (1998).
  • On the mixed order kinetics of the thermoluminescence glow peak.
    W Shambhunath Singh, S Dorendrajit Singh and P S Mazumdar.
    J. Phys.: Condens. Matter 10 4937-4946, (1998).
  • Activation energy of thermoluminescence glow curves in a hyperbolic heating scheme.
    W Shambhunath Singh, S Dorendrajit Singh, N C Deb§ and P S Mazumdar.
    J. Phys. D: Appl. Phys. 30 1146-1150, (1997).
  • On the determination of kinetic parameters by using points of inflection of a DTA curve.
    S. Dorendrajit Singh, W. G. Devi, A. K. Manihar Singh, N. C. Deb, , S. C. Mukherjee and P. S. Mazumdar.
    Thermochimica Acta, 298, 1-2,, Pages 149-153, (1997).
  • On the determination of the frequency factor in the thermally stimulated luminescence with non-first-order kinetics.
    S. Dorendrajit Singha, E. Dwiamani Singhb, N. C. Debc, , S. C. Mukherjeec and P. S. Mazumdara.
    Journal of Luminescence, 69, 3, 175-177, (1996).
  • A critical appraisal of the Dixit and Ray method for the analysis of non-isothermal kinetic data.
    S. Dorendrajit Singh, P. S. Mazumdar and W. G. Devi.
    Thermochimica Acta, 284, 2, 389-395, (1996).
  • Thermoluminescence glow curve of gamma-irradiated calcite.
    S Dorendrajit Singh and S Ingotombi.
    J. Phys. D: Appl. Phys. 28 1509-1516, (1995).
  • Point of inflection method for the determination of activation energy in thermally stimulated luminescence.
    S Dorendrajit Singh, T Basanta Singh, R K Gartia, N C Deb and P S Mazumdar.
    J. Phys. D: Appl. Phys. 28, 2356-2359, (1995)
  • Thermoluminescence of cement.
    R K Gartia , S Ingotombi and S Dorendrajit Singh.
    Bulletin of Materials Science, 18, 2, (1995)
  • Thermoluminescence of cement.
    R K Gartia , S Ingotombi and S Dorendrajit Singh.
    Bulletin of Materials Science, 18, 2, (1995).
  • Evaluation of temperature integral for temperature dependent frequency factors.
    R. K. Gartia, S. Dorendrajit Singh, T. Jekendra Singh and P. S. Mazumdar.
    J of Thermal Analysis and Calorimetry, 42, 5, (1994).
  • Computerized glow curve deconvolution: the case of LiF TLD-100.
    R K Gartia, S Dorendrajit Singh and P S Mazumdar
    1993 J. Phys. D: Appl. Phys. 26 858-861, (1993).