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Template:Infobox scientist Biswarup Mukhopadhyaya (born 1 August 1960) is an Indian theoretical high energy physicist and a senior professor at Indian Institute of Science Education and Research, Kolkata (IISER Kolkata).[1][2] Known for his research on High energy colliders, Higgs bosons, neutrinos,[3] Mukhopadhyaya is an elected fellow of the National Academy of Sciences, India.[4] The Council of Scientific and Industrial Research, the apex agency of the Government of India for scientific research, awarded him the Shanti Swarup Bhatnagar Prize for Science and Technology, one of the highest Indian science awards, for his contributions to physical sciences in 2003.[5]Template:Refn

Biography

Mukhopadhyaya, who secured his PhD from the Rajabazar Science College campus of Calcutta University, has done reportedly notable work on neutrino mass[6] and is known to have been successful in theorizing that gauge boson fusion as the dominant mode of supersymmetric particle production.[7] He has delivered invited lectures at a number of conferences[8] and was a member of the national organizing committees of the International Conference on particles, Strings and Cosmology (PASCOS), held in Mumbai in 2003[9] as well as the XXI DAE-BRNS High Energy Physics Symposium held in 2014.[10] His studies have been documented by way of a number of articlesTemplate:Refn and ResearchGate , an online article repository of scientific articles, has listed 184 of them.[11] He has also edited one book, Physics at the Large Hadron Collider, along with Amitava Datta and Amitava Raychaudhuri[12] and has contributed chapters to books edited by others.[13]

Selected bibliography

Books

  • Physics at the Large Hadron Collider{{#if:|, {{{last}}}}. Springer Science & Business Media(30 May 2010). ISBN 978-81-8489-295-6

Chapters

  • Particle Theory and Phenomenology: Proceedings of XVII International Kazimierz Meeting on Particle Physics and of the Madison Phenomenology Symposium{{#if:|, {{{last}}}}. World Scientific(30 November 1996). ISBN 978-981-4547-00-0

Articles

  • Supersymmetry and neutrino mass. Proceedings of the Indian National Science Academy({Template:Date).
  • Dark matter, neutrino masses and high scale validity of an inert Higgs doublet model. Phys. Rev. D({Template:Date).
  • Constraints on CP-violating gauge-Higgs operators. Phys. Rev. D({Template:Date).
  • Diphoton signal via Chern-Simons interaction in a warped geometry scenario. Phys. Rev. D({Template:Year).
  • High-scale validity of a two Higgs doublet scenario: predicting collider signals. Phys. Rev. D({Template:Year).

See also


Notes

  1. Designation: Professor I. Harish-Chandra Research Institute(2017-10-22). Retrieved 2017-10-22.
  2. Discovery of Higgs Boson: Reality and Myth. IIT Indore(2017-10-22). Retrieved 2017-10-22.
  3. Biswarup Mukhopadhyaya on HBNI. Homi Bhabha National Institute(2017-10-22). Retrieved 2017-10-22.
  4. NASI fellows. National Academy of Sciences, India(2017).
  5. View Bhatnagar Awardees. Shanti Swarup Bhatnagar Prize(2017-11-11). Retrieved 2017-11-11.
  6. Brief Profile of the Awardee. Shanti Swarup Bhatnagar Prize(2017-10-21). Retrieved 2017-10-21.
  7. Handbook of Shanti Swarup Bhatnagar Prize Winners. Council of Scientific and Industrial Research(2017-10-17). Retrieved 2017-10-17.
  8. International Conference on particles, Strings and Cosmology. Harish-Chandra Research Institute(2017-10-22). Retrieved 2017-10-22.
  9. Neutrino-Antineutrino Asymmetry around Rotating Black Hole. Tata Institute of Fundamental Research(2017-10-22). Retrieved 2017-10-22.
  10. XXI DAE-BRNS High Energy Physics Symposium 2014. IIT Guwahati(2017-10-22). Retrieved 2017-10-22.
  11. On ResearchGate(2017-10-17). Retrieved 2017-10-17.
  12. Physics at the Large Hadron Collider{{#if:|, {{{last}}}}. Springer Science & Business Media(30 May 2010). ISBN 978-81-8489-295-6
  13. Particle Theory and Phenomenology: Proceedings of XVII International Kazimierz Meeting on Particle Physics and of the Madison Phenomenology Symposium{{#if:|, {{{last}}}}. World Scientific(30 November 1996). ISBN 978-981-4547-00-0

References

Template:SSBPST recipients in Physical Science