Curriculum Vitae.

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1 Curriculum Vitae Name: Nationality: Dr. Swapnil Patil Indian Postal Address: Dr. Swapnil Patil, Assistant Professor, Department of Physics, Indian Institute of Technology (Banaras Hindu University), Varanasi , India Contact number: (Mobile) spatil.phy@itbhu.ac.in, swapnilpatil1981@yahoo.co.in Academic Qualifications B.Sc., University of Mumbai, Mumbai, India M.Sc., Indian Institute of Technology, Powai, Mumbai, India Ph.D. (Physics), Tata Institute of Fundamental Research, Mumbai, India (Supervisor: Prof. Kalobaran Maiti) May 2002 May 2004 July 2010 Employment Assistant Professor, Department of Physics, Indian Institute of Technology (Banaras Hindu University), Varanasi, India (2015 -) Visiting Scientist, Tata Institute of Fundamental Research, Mumbai, India ( ) Post doctoral Researcher, Alexander von Humboldt fellow, Institut für Festkörperphysik, TU Dresden, Germany ( ) Post doctoral Researcher, Max-Planck-Institut für Mikrostrukturphysik, Halle, Germany ( ) Graduate Student, Tata Institute of Fundamental Research, Mumbai, India ( ) Work Experience High resolution photoemission experiments using Gammadata Scienta SES2002 and R4000 electron analyzer using monochromatic UV, x-ray and synchrotron radiation sources. Electron coincidence spectroscopy studies on Sulfur/transition metal-oxide overlayers on metallic substrates. Magnetization measurements using VSM and SQUID magnetometer. 1

2 Electronic structure calculations using density functional theory. Achievements, Awards, Fellowships and Recognitions Scored highest marks in Physics at the Bachelors of Science (B.Sc.) examination, University of Mumbai, Bhavesh Gandhi award for best M.Sc. project, I.I.T. Mumbai, All India Rank One (AIR-1) in Physics in Graduate Aptitude Test of Engineering, India, 2004 (GATE-2004). All India Rank One (AIR-1) in the Joint Entrance Screening Test, India 2004 (JEST-2004). Shyama Prasad Mukherjee fellowship by CSIR India, T.A.A. Geetha Udgaonkar Award 2011 for best PhD thesis in Physics, T.I.F.R. India. Alexander von Humboldt postdoctoral fellowship by Alexander von Humboldt Foundation Germany, Best Poster Award at the International Conference Frontiers in Advanced Materials (FAM-2015) held at the Indian Institute of Science, Bangalore, India from June 15-18, The Poster Title: Photoemission insight into exotic low temperature physics of Kondo/heavy fermion systems. Brief description of Research Work My research work comprises understanding how magnetism is created and survives in diverse environments. Traditionally, long range magnetic order is exhibited by the partially filled d and f electron systems because they have strong electron correlations which gives rise to magnetic moment and the itinerant electron states mediate the long range magnetic interactions. However, recently there were observations of high temperature ferromagnetism exhibited by some p-electrons systems which do not have strong correlations (ref: Nature 397, 412 (1999)). Such experimental results indicate that our understanding about the origin of magnetism among the condensed matter systems is still not complete. We investigated the issue addressing the prevalent concerns pertaining to it (ref: Nature 420, 143 (2002)). Our investigations have provided vital clues towards the origin of such exotic magnetism and we have proposed a model for its explanation (ref: Phys. Rev. Lett. 99, (2007)). Since last few years, I have been trying to understand the origin of inconsistencies between the electron excitation spectra of Kondo systems, with the predicted spectral functions based on Anderson model etc. We had observed such inconsistencies remarkably in the photoemission spectra of rare earth based Kondo systems (ref: Phys. Rev. B 82, (2010), J. Phys.: Cond. Matt. 23, (2011)). Here the angle integrated Ce4f excitation spectra, interestingly displays strong temperature dependence for the Ce4f spin orbit satellite peak apart from the Fermi level peak, which is at variance with the predictions of the Anderson model. Recently our high resolution synchrotron based photoemission results have demonstrated that the Ce4f temperature dependence is not only observed for the Ce4f spin orbit satellite but extends even beyond it towards 2

3 higher binding energies (ref: J. Phys.: Cond. Matt. 25, (2013)) which also has no explanation among Anderson or related models. Very recently our Fermi surface studies on Yb based Kondo lattice systems have demonstrated invariant Fermi surface evolution with temperature for a large temperature window across its characteristic temperature scales viz. Kondo temperature and the Kondo lattice coherence temperature (ref. Phys. Rev. X 5, (2015)). Elucidating the origin of such inconsistencies would be a part of my future research. LIST OF PUBLICATIONS Published in International Journals 1. S. Patil, A. Generalov, M. Güttler, P. Kushwaha, A. Chikina, K. Kummer, T. C. Rödel, A. F. Santander-Syro, N. Caroca-Canales, C. Geibel, S. Danzenbächer, Y. Kucherenko, C. Laubschat, J. W. Allen and D. V. Vyalikh, ARPES view on surface and bulk hybridization phenomena in the antiferromagnetic Kondo lattice CeRh 2 Si 2 (appearing shortly as Nature Communications 7, (2016)). 2. K. Kummer, S. Patil, A. Chikina, M. Güttler, M. Höppner, A. Generalov, S. Danzenbächer, S. Seiro, A. Hannaske, C. Geibel, C. Krellner, Yu. Kucherenko, M. Shi, M. Radovic, E. Rienks, G. Zwicknagl, K. Matho, J.W. Allen, C. Laubschat and D. V. Vyalikh, Temperature-independent Fermi surface in the Kondo lattice YbRh 2 Si 2, Phys. Rev. X 5, (2015). 3. G. Di Filippo, M. I. Trioni, G. Fratesi, F. O. Schumann, Z. Wei, C. H. Li, L. Behnke, S. Patil, J. Kirschner and G. Stefani, The LVV Auger line shape of sulfur on copper studied by Auger photoelectron coincidence spectroscopy, J. Phys.: Condens. Matter 27, (2015). 4. M. Güttler, K. Kummer, S. Patil, M. Höppner, A. Hannaske, S. Danzenbächer, M. Shi, M. Radovic, E. Rienks, C. Laubschat, C. Geibel and D. V. Vyalikh, Tracing the localization of 4f electrons: Angle-resolved photoemission on YbCo2Si2, the stable trivalent counterpart of the heavy-fermion YbRh2Si2, Phys. Rev. B 90, (2014). 5. Swapnil Patil, Garima Saraswat, Ganesh Adhikary, R. Bindu, E. V. Sampathkumaran and Kalobaran Maiti, Anomalies in the electronic structure of a Pauli paramagnet, La 2 CoSi 3 and a Kondo lattice, Ce2CoSi3, EuroPhys. Lett. 108, (2014). 6. A. Chikina, M. Höppner, S. Seiro, K. Kummer, S. Danzenbächer, S. Patil, A. Generalov, M. Güttler, Yu. Kucherenko, E. V. Chulkov, Yu. M. Koroteev, K. Köpernik, C. Geibel, M. Shi, M. Radovic, C. Laubschat and D. V. Vyalikh, Strong ferromagnetism at the surface of an antiferromagnet caused by buried magnetic moments, Nature Communications 5, 3171 (2014). 7. S. Patil, A. Generalov and A. Omar, The unexpected absence of Kondo resonance in the photoemission spectrum of CeAl 2, J. Phys.: Condens. Matter 25, (2013). 8. M. Höppner, S. Seiro, A. Chikina, A. Fedorov, M. Guttler, S. Danzenbächer, A. Generalov, K. Kummer, S. Patil, S.L. Molodtsov, Y. Kucherenko, C. Geibel, V.N. Strocov, M. Shi, M. Radovic, T. Schmitt, C. Laubschat and D.V. Vyalikh, Interplay of Dirac fermions and heavy quasiparticles in solids, Nature Communications 4, 1646 (2013). 3

4 9. Ganesh Adhikary, R. Bindu, Swapnil Patil, and Kalobaran Maiti, Complex evolution of the electronic structure of Cr with temperature, Appl. Phys. Lett. 100, (2012). 10. Swapnil Patil, V. R. R. Medicherla, R. S. Singh, E. V. Sampathkumaran and Kalobaran Maiti, Evolution of the Kondo resonance feature and its relationship to spin-orbit coupling across the quantum critical point in Ce 2 Rh 1 x Co x Si 3, EuroPhys. Lett. 97, (2012). 11. Swapnil Patil, Ganesh Adhikary, Geeta Balakrishnan and Kalobaran Maiti, Unusual line shape of B 1s core level spectra in rare earth hexaborides, Solid State Communications 151, (2011). 12. Swapnil Patil, Ganesh Adhikary, G. Balakrishnan and Kalobaran Maiti, Unusual spectral renormalization in hexaborides, J. Phys.: Condens. Matter 23, (2011). 13. Swapnil Patil, V. R. R. Medicherla, R. S. Singh, Sudhir K. Pandey, E. V. Sampathkumaran, and Kalobaran Maiti, Kondo resonance in a magnetically ordered compound Ce2RhSi3: Photoemission spectroscopy and ab initio band structure calculations, Phys. Rev. B 82, (2010). 14. Swapnil Patil, Sudhir Pandey, V. R. R. Medicherla, R. S. Singh, R. Bindu, E. V. Sampathkumaran, and Kalobaran Maiti, Importance of conduction electron correlation in a Kondo lattice, Ce2CoSi3, J. Phys.: Condens. Matter 22, (2010). 15. R. Bindu, G. Adhikary, S. K. Pandey, S. Patil, and K. Maiti, Spectral evolution in an insulator exhibiting linear specific heat, New J. Phys. 12, (2010). 16. Swapnil Patil, Ganesh Adhikary, Geetha Balakrishnan, and Kalobaran Maiti, Influence of 4f electronic states on the surface states of rare-earth hexaborides, Appl. Phys. Lett. 96, (2010). 17. S. K. Pandey, Swapnil Patil, V. R. R. Medicherla, R. S. Singh, and Kalobaran Maiti, Electronic structure of PrCoO 3 and its temperature evolution, Phys. Rev. B 77, (2008). 18. Swapnil Patil, Kartik K. Iyer, K. Maiti, and E. V. Sampathkumaran, Behavior of magnetic ordering and the Kondo effect in the alloys Ce 2 Rh1-xCoxSi 3, Phys. Rev. B 77, (2008). 19. S. K. Pandey, Ashwani Kumar, S. Patil, V. R. R. Medicherla, R. S. Singh, K. Maiti, D. Prabhakaran, A. T. Boothroyd, and A. V. Pimpale, Investigation of the spin state of Co in LaCoO 3 at room temperature: Ab initio calculations and highresolution photoemission spectroscopy of single crystals, Phys. Rev. B 77, (2008). 20. K. Maiti, V. R. R. Medicherla, S. Patil and R. S. Singh, Revelation of the role of impurities and conduction electron density in the high resolution photoemission study of ferromagnetic hexaborides, Phys. Rev. Lett. 99, (2007). 21. V. R. R. Medicherla, S. Patil, R. S. Singh and K. Maiti, Origin of ground state anomaly in LaB 6 at low temperatures, Appl. Phys. Lett. 90, (2007). Conference proceedings 1. Swapnil Patil, Kurt Kummer, Ariane Hannaske, Cornelius Krellner, Steffen Danzenbächer, Clemens Laubschat, Christoph Geibel, Denis Vyalikh, Crystalline electric field splitting of 4f states in YbIr 2 Si 2 : An ARPES view, JPS Conf. Proc. 3, (2014). 4

5 2. Ganesh Adhikary, R. Bindu, Swapnil Patil, and Kalobaran Maiti, High Resolution Photoemission Study of Cr A Classic SDW-type Antiferromagnetic Metal, A.I.P. Conf. Proc. 1349, 819 (2011). 3. Kalobaran Maiti, Swapnil Patil, and E. V. Sampathkumaran, Kondo resonance in magnetic and non-magnetic Ce-intermetallics, A.I.P. Conf. Proc. 1347, 181 (2011). 4. Kalobaran Maiti, Swapnil Patil and Ganesh Adhikary, Observation of Kondo resonance in rare-earth hexaborides using high resolution photoemission spectroscopy, Journal of Physics: Conference Series 273, (2011). 5. K. Mukherjee, Kartik K. Iyer, Swapnil Patil, K. Maiti, and E. V. Sampathkumaran, Transport and magnetic behavior under pressure and highresolution photoemission studies of Ce2Rh0.7Co 0.3 Si 3, an alloy on the verge of quantum critical point, Journal of Physics: Conference Series 273, (2011). 6. Swapnil Patil, V. R. R. Medicherla, Ravi Shankar Singh, and Kalobaran Maiti, Ferromagnetism in p-electron system, Solid State Physics (India) 53, 879 (2008). 7. Swapnil Patil, V. R. R. Medicherla, Ravi Shankar Singh, Kalobaran Maiti, and E. V. Sampathkumaran, Importance of d-d electron correlation in the electronic structure of Ce 2 CoSi 3, Solid State Physics (India) 52, 613 (2007). 8. V. R. R. Medicherla, Swapnil Patil, Ravi Shankar Singh, and Kalobaran Maiti, High resolution photoemission study of LaB 6, Solid State Physics (India) 51, 613 (2006). 9. Swapnil Patil, V. R. R. Medicherla, Ravi Shankar Singh, and Kalobaran Maiti, Precursor effect in the superconductivity in MgB 2, Solid State Physics (India) 51, 611 (2006). 10. V.R.R. Medicherla, Ravi Shankar Singh, Swapnil Patil, and Kalobaran Maiti, Electronic Structure of LaB and CaB, Solid State Physics (India) 50, 603 (2005). Selected Preprints B S. Patil, A. Generalov and A. Omar, Inconsistency of the photoemission spectrum with the spectral function in Kondo systems, arxiv: Swapnil Patil, Origin of non-fermi liquid behavior in heavy fermion systems: A conceptual view, arxiv: Swapnil Patil, Improvements in the contemporary photoemission spectroscopy implementation: A message to the ARPES community, arxiv: Swapnil Patil, The origin of wave-particle duality of matter revealed, vixra:

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