Education
Ph.D. in physics, at the School of Graduate Studies Galileo Galilei, University of Pisa, Department of Physics, January 2007 - January 2009.
Thesis advisor: Prof. Kenichi Konishi.
Thesis title:“New vortex types and soliton substructures.”
Master of Science (cand.scient.), University of Copenhagen, Niels Bohr Institute, Septem- ber 2004 - October 2006.
Thesis advisor: Prof. Francesco Sannino.
Thesis title:“Beyond standard model physics: new technicolor models.” [thesis grade: 13/13 = A+]
Bachelor of Civil Engineering (bach.polyt.), Applied Physics, Technical University of Denmark, September 2001 - July 2004.
Thesis advisors: Prof. Andy Horsewell and Kjetil Gjerde.
Thesis title: “Investigation of Electrical properties of Multiwalled Carbon Nanotubes using TEM.”[thesis grade: 11/13 = A]
Research
Project Associate Professor at Keio University, Japan, April 2018 - September 2019.
Associate Professor at Institute of Modern Physics, Lanzhou, March 2015 - March 2018. Postdoc fellow at Nordita, Stockholm, September 2013 - February 2015.
Postdoc at the Racah Institute of Physics, The Hebrew University of Jerusalem, October 2012 - September 2013.
Postdoc with a Golda Meir postdoc fellowship at the Racah Institute of Physics, The Hebrew University of Jerusalem, October 2010 - September 2012.
Interdoc at School of Graduate Studies Galileo Galilei, at Department of Physics, Uni- versity of Pisa, - January 2010 - September 2010.
Grants (as principal investigator)
MianShang Grant from National Natural Science Foundation of China, 2017-2021, ~ 90,000 USD, Grant No. 11675223. Title of research: “Nuclear clusters in the Skyrme model.”
Foreign expert grant from Ministry of Science and Technology of China, 2022-2024, ~ 400,000 RMB (Grant No. G2022026021L), Title of research: "On the nuclear clustering in the Skyrme model and a new vibrational quantization method".
Fellowships
2013-2015: Nordita fellowship
2013-2014: Japan Society for Promotion of Science (JSPS) fellowship (declined).
2011-2012: Golda Meir postdoc fellowship.
2010-2011: Golda Meir postdoc fellowship.
Languages
| spoken | written |
Danish | native | native |
English | professional proficiency | professional proficiency |
Italian | working proficiency | working proficiency |
German | basic | basic |
Hebrew | very basic | very basic |
Swedish | basic | basic |
Chinese | basic | basic (~ 1000 characters) |
Japanese | learning | learning |
Computer Skills
Programming languages: C++/C, CUDA C/C++, OpenCL, Java, FORTRAN90, Vi- sual Basic, SQL; scripting languages: sh/bash/yash, AWK/GAWK, Perl, PHP, ASP, Javascript; mark-up languages: HTML, XHTML/CSS, XML.
Parallel programming: CUDA C/C++, OpenMP for C++, MPI in C++, Mathematica:
ParallelDo, ParallelTable etc., MATLAB: parfeval, parfor, etc.
Computational packages: Mathematica, MATLAB, Maple, Octave, SAGE, SOFTSUSY, Spheno, Feynhiggs, SUSY-HIT.
Versioning/revision control software: SVN and CVS.
Finite difference methods for ODEs and PDEs: Runge-Kutta, (Nonlinear) conjugate gradients, Newton-Raphson, Crank-Nicolson, gradient flow, Newton flow, etc.
LaTeX, Gnuplot and postscript.
Linux (Ubuntu, Debian, Slackware, Gentoo, SUSE, CentOS, RedHat etc.) and Unix (Solaris, FreeBSD).
Selected publications
[1]S. Bolognesi, S. B. Gudnason* and R. Menta,
Magnetic Skyrmions: from lumps to supercompactons,
Phys. Rev. Res.6, 043162 (2024) [arXiv:2406.03941 [cond-mat.mes-hall]].
[2]S. B. Gudnason*,
Nineteen vortex equations and integrability,
J. Phys. A: Math. Theor. 55, 405401 (2022) [arXiv:2203.09115 [math-ph]].
[3]S. B. Gudnason*, C. Halcrow,
A Smörgåsbord of Skyrmions,
JHEP 2208, 117 (2022) [arXiv:2202.01792 [hep-th]].
[4]S. B. Gudnason* and M. Nitta,
A higher-order Skyrme model,
JHEP 1709, 028 (2017) [arXiv:1705.03438 [hep-th]].
[5]S. B. Gudnason*, M. Nitta and S. Sasaki,
A supersymmetric Skyrme model,
JHEP 1602, 074 (2016) [arXiv:1512.07557 [hep-th]]
[6]S. B. Gudnason* and M. Nitta,
Domain wall Skyrmions,
Phys. Rev. D89, 085022 (2014) [arXiv:1403.1245 [hep-th]].
[7]R. Auzzi, A. Giveon and S. B. Gudnason*,
Flavor of quiver-like realizations of effective supersymmetry,
JHEP 1202, 069 (2012) [arXiv:1112.6261 [hep-ph]].
[8]S. B. Gudnason*,
Non-Abelian Chern-Simons vortices with generic gauge groups,
Nucl. Phys. B821, 151 (2009) [arXiv:0906.0021 [hep-th]].
[9]S. Bolognesi and S. B. Gudnason*,
A Note on Chern-Simons Solitons - a type III vortex from the wall vortex,
Nucl. Phys. B805, 104 (2008) [arXiv:0711.3803 [hep-th]].
[10]S. B. Gudnason, C. Kouvaris and F. Sannino*,
Dark matter from new technicolor theories,
Phys. Rev. D74, 095008 (2006) [arXiv:hep-ph/0608055].
Links to my publication list online
http://inspirehep.net/search?ln=en&p=find+a+gudnason&of=hb&action search= Search&sf=earliestdate&so=d
http://bjarke.gudnason.net/publications.html
Research homepage:http://bjarke.gudnason.net