Department of Physics & Material Science

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About Department of Physics & Material Science


The Department of Physics and Material Science was established on 22nd June, 2019. Which has been inaugurated by Shri Yogi Adiyanath Ji Maharaj, Hon’ble Chief Minister of Uttar Pradesh. Previously, it has been the constituent part of Department of Applied Sciences. The erstwhile Madan Mohan Malaviya Engineering College, Gorakhpur, which was started in 1962, by the then Government of Uttar Pradesh to foster technical education, has been upgraded as Madan Mohan Malaviya University of Technology, Gorakhpur on 1st Dec. 2013 by the UP-Government Act (22). The department of Physics and Material Science has been founded for imparting high quality education through the programs; B. Tech in Chemical Engineering, Civil Engineering, Computer Science & Engineering, Electrical Engineering, Electronics & Communication Engineering, Information Technology, Mechanical Engineering and M.Sc. in Physics with specialization in electronics.

The main objective of the department is to disseminate knowledge in the area of Physics and Material Science, in order to promote the implementation of practical aspects related to it and to build a solid foundation of physics for science and engineering graduates. The department offers Ph. D. degree in Physics, with an objective to produce trained and skilled human resources; who can take the challenges to cater the need of the society. The research is focused to thrust areas as: Con­densed Matter Physics, Solar Energy Physics, Thin Films, Opto-electronic Materials and Devices, Fiber Optic Sensors, Solar Cell, Energy Storage, Applications of Nanomaterial, Micro & Nano-fluids, Molecular Simulation etc.

The Department is also committed, to promote teaching and research, in thrust and emerging areas of Physics. It encourages for academic interaction of students and faculty members for collaboration at national and international levels. Department has started M.Sc. program in Physics with specialization in electronics from the session 2018-19. The Department has well equipped laboratories for under graduate, post graduate as well as Ph.D. students. Well-educated, talented and dedicated faculty members are consistently engaged to meet the objective of the department.

DEPARTMENTAL ACTIVITIES DURING THE SESSION 2018-19

● TEQIP Sponsored short term course on “Research Methodology and Statistics during 24-30 October, 2018.

● TEQIP Sponsored two days National Conference on “Smart Materials, Devices and Sustainable Technologies” during 15-16 March-2019.

● TEQIP Sponsored two days National Conference on “Recent Advances in Chemical Sciences” 29th -30th March-2019.

● TEQIP sponsored two days National Conference on “Recent Advances in Mathematics and Scientific Computing” during 5-6 April, 2019.

● One Research Scholars have been awarded Ph.D. degree during 2018-19

● Department have coordinated Induction program for newly admitted students (IPNS- 18).

● Four books have been published from international publishers and one is in press.

● More than 27 research papers are published in the journals and conferences of national and international repute.

MAJOR ACHIEVEMENT OF THE DEPARTMENT DURING SESSION 2018-19

Publication & Training Programs

Name of Department No. of Papers in Journal No. of Papers in Conference No. of Books/ Book Chapters No. of Conferences No. of STC/ Workshop
National International Organized Attended Organized Attended
Physics and Material Science 27 NIL 06 06 03 11 2 5

OTHER ACTIVITIES

Name of Department Name of Activities

Physics and Material Science

● Department has organized three national conferences

● New Laboratory of Condensed Matter Physics has been established for M.Sc. Physics students.

● New Laboratory of Spectroscopy and Laser has been established for M.Sc. Physics students.

● New Advisory committee for the department has been formed.

● Research Scholar Day celebrated on 17 Dec. 2018.

● Invited Lecture was organized on 28th March 2019 on “Mangalyan Journey to Mars” by Prof. A. K. Singh, Banaras Hindu University, Varansi.

Recent News

  • Young Scientist Award
    Ms Shivani Gupta research scholar of our department, pursuing her Ph.D. under the joint supervision of Prof. B.K. Pandey and Dr. A. K. Gupta, has been awarded Young Scientist Award in 21st National Conference on Solid State Nuclear Track Detectors and Their Applications (SSNTDs-21), jointly organized by Department of Physics, Ramjas College and Department of Physics & Astrophysics, University of Delhi in Collaboration with Nuclear Track Society of India (NTSI) during 29-31 January, 2021. She got this award along with prize money of Rs. 1000/

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  • Best Paper Presenter
    Mohammad Adil Nawaz pursuing his dissertation work under supervision of Prof. B. K. Pandey received Best Paper Presenter award in the International Conference on Modern Approaches in Engineering, Science and Management MAESM-2021, Organized by Bansal Institute of Engineering and Technology Lucknow, (U.P.) India during April 16-17, 2021.

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  • VIGYAN VIDUSHI of TATA INSTITUTE of FUNDAMENTAL RESEARCH
    Ms Sapana Yadav, Student of M.Sc. Ist Year is selected for VIGYAN VIDUSHI of TATA INSTITUTE of FUNDAMENTAL RESEARCH

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  • Best Paper Award presented to Mr. Sachin Singh, Ph.D. Scholar (Supervisor- Prof. D. K. Dwivedi)
    in ICVMWT-2021 held during March 20-21, 2021 at MMMUT, Gorakhpur

  • Major Research Project
    Major Research Project of Amount 11.44 Lacs sanctioned to Prof. D. K. Dwivedi from UPCST

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  • Best Oral Presentation Award of Excellence in International Conference on “Advanced Functional Materials and Devices (AFMD-2021)”, ARSDC and IQAC, University of Delhi, New Delhi
    Sarvesh Kumar Gupta, Ph.D. student (Supervisor- Dr. A. K. Gupta), Physics and Material Science received Best Oral Presentation Award of Excellence in International Conference "AFMD-2021"

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  • AKG/ D J Griffiths - Quantum Mechanics
    AKG/ Useful for Unit IV: Approximate Methods

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  • AKG/Unit IV: Approximate Methods
    AKG/Further Notes on The Variational method

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  • AKG/AQM/Unit IV: Approximate Methods/Perturbation theory
    AKG/AQM/Unit IV: Approximate Methods/Perturbation theory

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  • AKG/AQM/Unit IV: Approximate Methods
    AKG/The Variational method, Estimation of ground state energy

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  • AKG/AQM/ZETTILI BOOK
    Unit IV: Approximate Methods

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  • AKG/AQM/Unit IV: Approximate Methods
    AKG/The Wentzel-Kramers-Brillouin (WKB) method, Validity of the WKB approximation

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  • AKG/AQM/Unit III: Field Quantization
    Introduction to quantum field theory, Lagrangian field theory, Euler–Lagrange equations, Hamiltonian formalism, Quantized Lagrangian field theory, Canonical commutation relations, Normal ordering, Fock space

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  • AKG/AQM/
    AKG/Quantum Field Theory by F. Mandl & G. Shaw

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  • ADVANCE QUANTUM MECHANICS
    AKG/BOOK/AQM/[James_D Bjorken, Sidney D.Drell/RQM

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  • Unit II: Covariance of Dirac Equation
    AKG/Unit-II/Covariance of Dirac Equation

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  • Unit I: Formulation of Relativistic Quantum Theory
    AKG/Unit-I/Formulation of Relativistic Quantum Theory

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  • Unit III: Field Quantization
    AKG/Unit-III/ntroduction to quantum field theory, Lagrangian field theory

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-18

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-17

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-16

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-15

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-13

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-12

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-11

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-10

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-9

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-8

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-7

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-6

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-5

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-4

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-3

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-2

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-1

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  • MPM-202, Unit-II, Lecture-8

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  • MPM-202, Unit-II, Lecture-7

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  • MPM-202, Unit-II, Lecture-6

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  • MPM-202, Unit-II, Lecture-5

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  • MPM-202, Unit-II, Lecture-4

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  • MPM-202, Unit-II, Lecture-3

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  • MPM-202, Unit-II, Lecture-2

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  • MPM-202, Unit-II, Lecture-1

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  • MPM-202, Unit-I, Lecture-8

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  • MPM-202, Unit-I, Lecture-7

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  • MPM-202, Unit-I, Lecture-7

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  • MPM-202, Unit-I, Lecture-6

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  • MPM-202, Unit-I, Lecture-5

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  • MPM-202, Unit-I, Lecture-4

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  • MPM-202, Unit-I, Lecture-3

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  • MPM-202, Unit-I, Lecture-3

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  • MPM-202, Unit-I, Lecture-2

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  • MPM-202, Unit-I, Lecture-1

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-33

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-32

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-31

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-30

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-29

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-28

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-27

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-26

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-25

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-24

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-23

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-22

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-21

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-20

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-19

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-18

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-17

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-16

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-15

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-14

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-13

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-12

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-11

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-11

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-7

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-6

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-5

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-4

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-3

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-2

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-1

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  • E- content of Engineering Physics-II BPM-02 Unit-I(ii)

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  • E- content of Engineering Physics-II BPM-02 Unit-IV(ii)

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  • E- content of Engineering Physics-II BPM-02 Unit-IV(i)

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  • E- content of Engineering Physics-II BPM-02 Unit-III(ii)

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  • E- content of Engineering Physics-II BPM-02 Unit-III(i)

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  • E- content of Engineering Physics-II BPM-02 Unit-II(iii)

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  • E- content of Engineering Physics-II BPM-02 Unit-II(ii)

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  • E- content of Engineering Physics-II BPM-02 Unit-II(i)

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  • E- content of Engineering Physics-II BPM-02 Unit-I(i)

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  • National Conference organized by the Department
    National Conference organized by the Department during 15-16 March 2019 on Smart Materials Devices and Sustainable Technologies

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