Jan Smotlacha
Condensed Matter Physics Division, Bogoliubov Laboratory of Theoretical Physics, Joint Institute for Nuclear Research
141980 Dubna, Moscow region, Russia
PHONE: +7-49621-63143, +420 603 325763
E-mail: smotlacha@theor.jinr.ru, smota@centrum.cz

Date and place of Birth: 24 January 1979, Vrchlabi, Czech Republic
         
EDUCATION
FIELDS OF SPECIALIZATION
PUBLICATIONS
CONFERENCES AND SCHOOLS
EDUCATION
 

2004 - 2012

PhD. studies in Mathematical Physics Faculty of Nuclear Sciences and Physical Engineering (FNSPE),
Czech Technical University, Prague, Czech Republic

THESIS: Numerical solutions of some models in quantum mechanics SUPERVISOR: Doc. Ing. Goce Chadzitaskos, CSc.

   

1997-2004

Master studies in Mathematical Physics FNSPE, Czech Technical University, Prague, Czech Republic

THESIS: Differential dispersion relations and their application on high-energy scattering of hadrons SUPERVISOR: Prof. RNDr. Jan Fischer, DrSc.

   

FIELDS OF SPECIALIZATION

   
  • Electronic structure of nanoparticles
  • Calculus of quantum-optical interactions
  • Deformations of universal enveloping algebras
  • Modeling of high-energy scattering
   

PUBLICATIONS

   
  1. J. Smotlacha, R. Pincak, Electronic Properties of Carbon Nanostructures. Chapter in book: "2D Materials", ISBN 978-953-51-4813-5, Intech (2016)
  2. R. Pincak, J. Smotlacha, Green Function Approach to the Calculation of the Local Density of States in the Graphitic Nanocone. Conference on Mathematical Modeling and Computational Physics (MMCP) Location: Acad Congress Ctr, Stara Lesna, Slovakia Date: Jul 13-17, 2015. In EPJ Web of Conferences, vol. 108, 02043 (2016)
  3. R. Pincak, J. Smotlacha, V.A. Osipov, Electronic states of zigzag graphene nanoribbons with edges re- constructed with topological defects, Physica B, 475, Pages 61-65 (2015). doi:10.1016/j.physb.2015.06.025
  4. R. Pincak, J. Smotlacha The chiral massive fermions in the graphitic wormhole, Quantum Matter, 4, pp. 1-11 (2015) [pdf]
  5. R. Pincak, J. Smotlacha, M. Pudlak Spin-orbit interaction in the graphitic nanocone, Eur. Phys. J. B 88:17 (2015)
    DOI: 10.1140/epjb/e2014-50413-9
  6. R. Pincak, J. Smotlacha, M. Pudlak Calculation of the electronic structure near the tip of a graphitic nano cone, Physica B 441, pp. 58-61 (2014) doi:10.1016/j.physb.2014.02.012
  7. J. Smotlacha, R. Pincak, Application of greens function approach to electronic structure of carbon nanocylinders, NANOSYSTEMS: PHYSICS, CHEMISTRY, MATHEMATICS (2013) 4 (4) 490 [pdf]
  8. R. Pincak, J. Smotlacha, Analogies in electronic properties of graphene wormhole and perturbed nanocylinder, Eur. Phys. J. B (2013) 86: 480 [pdf]
  9. R. Pincak, J. Smotlacha, M. Pudlak, Electronic properties of disclinated nanostructured cylinders, 2013, NanoMMTA, Vol. 2, 81-95 DOI: 10.2478/nsmmt-2013-0005
  10. J. Smotlacha, G. Chadzitaskos, Contractions of 3-Dimensional Representations of the Lie Al-gebra SL(2), JGLTA 6 (2012)
  11. R. Pincak, J. Smotlacha and M. Pudlak, Electronic properties of perturbed cylinder, 2012,
    J. of Phys.: Conf. Ser. 393 012029 [pdf]
  12. J.Smotlacha, R. Pincak, M. Pudlak, Electronic structure of disordered graphene with Green's function approach, Physics Letters A 376, Issue 45 (2012) 3256 [pdf]
  13. R.Pincak, M.Pudlak, J.Smotlacha, Electronic properties of single and double wall carbon nanotubes Carbon Nanotubes:Synthesis, Properties and Applications (NOVA Science Publisher, NY, 2012), ISBN: 978-1-62081-914-2 [pdf]
  14. J. Smotlacha, R. Pincak, M. Pudlak, Electronic Structure of Disclinated Graphene in an Uniform Magnetic Field, Eur.Phys.J. B 84,255-264 (2011) [pdf]
   

CONFERENCES AND SCHOOLS

   
  1. J. Smotlacha, R. Pincak, Spin-Orbital and p-Orbital Interactions in the Graphitic Nanocone, Graphene 2015, Bilbao (2015)
  2. J. Smotlacha, R. Pincak, Spin-Orbital and p-Orbital Interactions in the Graphitic Nanocone, International Conference on Scanning Probe Microscopy on Soft and Polymeric Materials, Toronto (2014)
  3. J. Smotlacha, R. Pincak, Electronic Properties of Graphene Wormhole, XXIIst International Conference on Integrable Systems and QuantumSymmetries, Prague (2014)
  4. J. Smotlacha, Electronic Properties of Carbon Nanoparticles, XXIst International Conference on Integrable Systems and Quantum Symmetries Prague (2013)
  5. J. Smotlacha and R. Pincak, Application of Greens function approach to electronic structure of carbon nanocylinders, Mathematical Challenge of Quantum Transport in Nanosystems, Sankt-Petersburg (2013)
  6. J. Smotlacha, G. Chadzitaskos, Four Boson Interaction in Quantum Optics, XXXI. Winter School on Geometry and Physics, Srni, Czech Republic (2011); XXXI. Workshop on Geometric Methods in Physics, Bialowieza (2012)
  7. J. Smotlacha, G. Chadzitaskos, C. Daskaloyannis, Spectra of Photon Down Conversion, XXVIII. Workshop on Geometric Methods in Physics, Bialowieza (2009)
   
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Updated on 23 January 2017