PIOTR  SUŁKOWSKI

CONTACT          RESEARCH          PUBLICATIONS          CV          TEACHING 
String theory Biophysics Miscellanea PhD thesis

    String theory, mathematical physics
24. Hiroyuki Fuji, Piotr Sułkowski
"Super-A-polynomial",
arXiv: 1303.3709 [math.AG].
23. Motohico Mulase, Piotr Sułkowski
"Spectral curves and the Schroedinger equations for the Eynard-Orantin recursion",
arXiv: 1210.3006 [math-ph].
22. Hiroyuki Fuji, Sergei Gukov, Marko Stosic, Piotr Sułkowski
"3d analogs of Argyres-Douglas theories and knot homologies",
JHEP 1301 (2013) 175, arXiv: 1209.1416 [hep-th].
21. Hiroyuki Fuji, Sergei Gukov, Piotr Sułkowski
"Super-A-polynomial for knots and BPS states",
Nucl. Phys. B867 (2013) 506, arXiv: 1205.1515 [hep-th].
20. Jorgen AndersenLeonid Chekhov, Robert PennerChristian Reidys, Piotr Sułkowski
"Topological recursion for chord diagrams, RNA complexes, and cells in moduli spaces",
Nucl. Phys. B866 (2013) 414, arXiv: 1205.0658 [hep-th].
19. Hiroyuki Fuji, Sergei Gukov, Piotr Sułkowski, with an appendix by Hidetoshi Awata
"Volume Conjecture: Refined and Categorified",
Adv. Theor. Math. Phys. (2013), arXiv: 1203.2182 [hep-th].
18. Vincent Bouchard, Andrei Catuneau, Oliver Marchal, Piotr Sułkowski
"The remodeling conjecture and the Faber-Pandharipande formula",
Lett. Mat. Phys. 103, 1 (2013) 59-77, arXiv: 1108.2689 [math.AG].
17. Sergei Gukov, Piotr Sułkowski
"A-polynomial, B-model, and Quantization",
JHEP 1202 (2012) 070, arXiv: 1108.0002 [hep-th].
16. Piotr Sułkowski,
"BPS states, crystals and matrices",
Advances in High Energy Physics (2011) 357016, arXiv: 1106.4873 [hep-th].
15. Vincent Bouchard, Piotr Sułkowski
"Topological recursion and mirror curves",
Adv. Theor. Math. Phys. 16, 5 (2012) 1443-1483, arXiv: 1105.2052 [hep-th].
14. Piotr Sułkowski,
"Refined matrix models from BPS counting",
Phys. Rev. D83 (2011) 085021arXiv: 1012.3228 [hep-th].
13. Piotr Sułkowski,
"Wall-crossing, open BPS counting and matrix models",
JHEP 1103 (2011) 089, arXiv: 1011.5269 [hep-th].
12. Hirosi Ooguri, Piotr SułkowskiMasahito Yamazaki,
"Wall Crossing As Seen By Matrix Models",
Commun. Math. Phys. 307 (2011) 429, arXiv: 1005.1293 [hep-th].
11. Piotr Sułkowski
Matrix models for ß-ensembles from Nekrasov partition functions”,
JHEP 1004 (2010) 063, arXiv: 0912.5476 [hep-th].
10. Piotr Sułkowski
Wall-crossing, free fermions and crystal melting”,

Commun. Math. Phys. 301 (2011) 517, arXiv: 0910.5485 [hep-th].
9. Piotr Sułkowski
Matrix models for 2* theories”,

Phys. Rev. D80 (2009) 086006,
arXiv: 0904.3064 [hep-th].
8. Albrecht KlemmPiotr Sułkowski,
Seiberg-Witten theory and matrix models",
Nucl. Phys. B819 (2009) 400arXiv: 0810.4944 [hep-th], poster.
7. Robbert Dijkgraaf, Lotte Hollands, Piotr Sułkowski,
"Quantum Curves and D-modules",
JHEP 0911 (2009) 047arXiv: 0810.4157 [hep-th].
6. Piotr Sułkowski
Deformed boson-fermion correspondence, Q-bosons, and topological strings on the conifold”,
JHEP 0810 (2008) 104, arXiv: 0808.2327 [hep-th].
5. Robbert DijkgraafPiotr Sułkowski,
“Instantons on ALE spaces and orbifold partitions”,
JHEP 0803 (2008) 013, arXiv: 0712.1427 [hep-th].
4. Robbert Dijkgraaf, Lotte HollandsPiotr Sułkowski, Cumrun Vafa,
“Supersymmetric Gauge Theories, Intersecting Branes and Free Fermions”,
JHEP 0802 (2008) 106, arXiv: 0709.4446 [hep-th].

3. Piotr Sułkowski,
“Crystal Model for the Closed Topological Vertex Geometry”,
JHEP 0612 (2006) 030, arXiv: hep-th/0606055.
2. Nicholas Halmagyi, Annamaria SinkovicsPiotr Sułkowski,
“Knot invariants and Calabi-Yau crystals”,
JHEP 0601 (2006) 040, arXiv: hep-th/0506230.
1. Piotr Sułkowski,
On Tachyon Potential in Boundary String Field Theory and Problems with Boundary Fermions”,    
Acta Phys. Polon. B34 (2003) 4167-4183. 

    Biophysics
8. Jorgen AndersenLeonid Chekhov, Robert PennerChristian Reidys, Piotr Sułkowski
"Enumeration of RNA complexes via random matrix theory",
Biochem. Soc. Trans. 41 (2013) 652
arXiv: 1303.1326 [q-bio.QM].
7. Jorgen AndersenLeonid Chekhov, Robert PennerChristian Reidys, Piotr Sułkowski
"Topological recursion for chord diagrams, RNA complexes, and cells in moduli spaces",
Nucl. Phys. B866 (2013) 414
arXiv: 1205.0658 [hep-th].
6. Joanna I. SułkowskaPiotr Sułkowski, Piotr Szymczak, Marek Cieplak,
“Untying knots in proteins”,
JACS 132 (40) (2010) 13954
5. Joanna I. SułkowskaPiotr Sułkowski, Jose N. Onuchic,
“Jamming proteins with slipknots and their free energy landscape”,
Phys. Rev. Lett. 103 (2009) 268103, arXiv: 1001.0009 [q-bio].
4. Joanna I. SułkowskaPiotr Sułkowski, Piotr Szymczak, Marek Cieplak,
“Stretching the knotted protein YibK and its unknotted constructs”,
Proc. of the conference on "Knots and soft-matter physics", Kyoto University, Japan, 2009
3. Joanna I. SułkowskaPiotr Sułkowski, Jose N. Onuchic,
“Dodging the crisis in protein folding with knots”,
PNAS 106 (2009) 3119, arXiv: 0912.5450 [q-bio].
2. Joanna I. SułkowskaPiotr Sułkowski, Piotr Szymczak, Marek Cieplak,
“Stabilizing effect of knots on proteins - How knots influence properties of proteins”,
PNAS 105 (2008) 19714, arXiv: 0810.0415 [q-bio].
1. Joanna I. SułkowskaPiotr Sułkowski, Piotr Szymczak, Marek Cieplak,
“Tightening of knots in proteins”,
Phys. Rev. Lett. 100 (2008) 058106, arXiv: 0706.2380 [q-bio].

    Miscellanea 
"Analiza matematyczna Form Przestrzennych" - "Mathematical Analysis of Spatial Forms"
Książka / Book (2013), Galeria El - konferencja / conference (2012)
How to untie?,
JACS Image Challenge
“Protein folding: knotted or not”,
Royal Society of Chemistry - Chemistry World News (2010)
"Polscy badacze na tropie tajemnic węzłów w białkach”,
MNiSW - Sukcesy uczonych (2010)
PAP - Nauka w Polsce (2010)
“Jamming proteins with slipknots and their free energy landscape”,
 Vir. J. Bio. Phys. Res. 19 (2010) 1

    PhD thesis
"Calabi-Yau crystals in topological string theory”,
arXiv: 0712.2173 [hep-th].

updated March 2013