M
Mukesh K. Pandey
Researcher at National Taiwan University
Publications - 13
Citations - 153
Mukesh K. Pandey is an academic researcher from National Taiwan University. The author has contributed to research in topics: Dark matter & Luminescence. The author has an hindex of 6, co-authored 13 publications receiving 91 citations. Previous affiliations of Mukesh K. Pandey include Academia Sinica.
Papers
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Investigations on optical properties of ZnO decorated graphene oxide (ZnO@GO) and reduced graphene oxide (ZnO@r-GO)
TL;DR: In this paper, an improved Hummer's method was used to produce reduced graphene oxide (r-GO) from the graphene oxide at elaborated conditions, named as GO and IGO, respectively.
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Constraints on millicharged particles with low threshold germanium detectors at Kuo-Sheng Reactor Neutrino Laboratory
L. Singh,Jiunn-Wei Chen,Hsin-Chang Chi,C.-P. Liu,Mukesh K. Pandey,Henry T. Wong,C. P. Wu,M. Agartioglu,M. Deniz,Hau-Bin Li,S. T. Lin,V. Sharma,M. K. Singh,V. Singh,Qian Yue +14 more
TL;DR: In this paper, the mass and charge of relativistic millicharged particles were derived with point-contact germanium detector with 500g mass functioning at an energy threshold of 300~eV at the Kuo Sheng Reactor Neutrino Laboratory.
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Discovery potential of multiton xenon detectors in neutrino electromagnetic properties
Chung-Chun Hsieh,Lakhwinder Singh,Lakhwinder Singh,Chih-Pan Wu,Jiunn-Wei Chen,Jiunn-Wei Chen,Hsin-Chang Chi,C.-P. Liu,Mukesh K. Pandey,Henry T. Wong +9 more
TL;DR: In this paper, the discovery potential of ton-scale xenon detectors in electromagnetic moments of solar neutrinos was studied and the results showed that with one ton-year exposure, XENON-1T can improve the effective millicharge constraint by a factor of 2.
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Constraints from a many-body method on spin-independent dark matter scattering off electrons using data from germanium and xenon detectors
Mukesh K. Pandey,Lakhwinder Singh,Lakhwinder Singh,Chih-Pan Wu,Chih-Pan Wu,Jiunn-Wei Chen,Jiunn-Wei Chen,Hsin-Chang Chi,Chung-Chun Hsieh,C.-P. Liu,Henry T. Wong +10 more
TL;DR: In this article, a state-of-the-art many-body method is used to evaluate the spin-independent atomic ionization cross sections of light dark matter (LDM)-electron scattering, with an estimated error about 20%.
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Ultra-bright emission from Sr doped TiO 2 nanoparticles through r-GO conjugation
Sanhita Mandal,Neha Jain,Mukesh K. Pandey,S S Sreejakumari,Prashant Shukla,Anupama Chanda,Sudipta Som,Subrata Das,Jai Singh +8 more
TL;DR: The microscopic studies confirmed the formation of graphene sheets which looked like a paper which could easily wrap over the bacterial surface killing them.