Scientific Publications by Julius Ruseckas

Journal articles indexed in Web of Science

  1. S. H. Asadpour, M. Abbas, H. R. Hamedi, J. Ruseckas, E. Paspalakis, and R. Asgari, Spatiospectral control of spontaneous emission, Phys. Rev. A 110, 033706 (2024). arXiv 2408.12700 [quant-ph]; PDF
  2. M. Abbas, S. H. Asadpour, Ziauddin, P. Zhang, J. Ruseckas, and H. R. Hamedi, Goos-Hänchen shifts in a combined tripod and Λ atom-light coupling scheme, Phys. Rev. A 110, 023730 (2024). PDF
  3. H. R. Hamedi, J. Ruseckas, V. Yannopapas, E. Paspalakis, Enhanced coherent optical effects in Ξ-shaped hybrid quantum-plasmonic systems, Eur. Phys. J. Plus 139, 314 (2024). PDF
  4. H. R. Hamedi, V. Yannopapas, E. Paspalakis, J. Ruseckas, Spatially patterned light amplification without inversion, Results Phys. 54, 107135 (2023). PDF
  5. H. R. Hamedi, J. Ruseckas, V. Yannopapas, D. Karaoulanis, E. Paspalakis, Light-induced enhanced torque on double-V-type quantum emitters via quantum interference in spontaneous emission, Optics & Laser Technology 165, 109550 (2023). PDF
  6. M. Wasilewska, A. Kliks, H. Bogucka, K. Cichoń, J. Ruseckas, G. Molis, A. Mackutė-Varoneckienė, and T. Krilavičius, Artificial Intelligence for Radio Communication Context-Awareness, IEEE Access 9, 144820-144856 (2021). PDF
  7. B. Kim, K.-T. Chen, S.-S. Hsiao, S.-Y. Wang, K.-B. Li, J. Ruseckas, G. Juzeliūnas, T. Kirova, M. Auzinsh, Y.-C. Chen, Y.-F. Chen, I. A. Yu, A weakly-interacting many-body system of Rydberg polaritons based on electromagnetically induced transparency, Commun. Phys. 4, 101 (2021). PDF
  8. H. R. Hamedi, J. Ruseckas, E. Paspalakis, and G. Juzeliūnas, Off-axis optical vortices using double-Raman singlet and doublet light-matter schemes, Phys. Rev. A 101, 063828 (2020). PDF
  9. H. R. Hamedi, E. Paspalakis, G. Žlabys, G. Juzeliūnas, and J. Ruseckas, Complete energy conversion between light beams carrying orbital angular momentum using coherent population trapping for a coherently driven double-Λ atom-light-coupling scheme, Phys. Rev. A 100, 023811 (2019). arXiv 1905.00351 [quant-ph]; PDF
    Erratum:
    H. R. Hamedi, E. Paspalakis, G. Žlabys, G. Juzeliūnas, and J. Ruseckas, Erratum: Complete energy conversion between light beams carrying orbital angular momentum using coherent population trapping for a coherently driven double-Λ atom-light-coupling scheme [Phys. Rev. A 100, 023811 (2019)], Phys. Rev. A 102, 019903(E) (2020). PDF
  10. B. Kim, K.-T. Chen, C.-Y. Hsu, S.-S. Hsiao, Y.-C. Tseng, C.-Y. Lee, S.-L. Liang, Y.-H. Lai, J. Ruseckas, G. Juzeliūnas, and I. A. Yu, Effect of laser-frequency fluctuation on the decay rate of Rydberg coherence, Phys. Rev. A 100, 013815 (2019). arXiv 1902.09845 [physics.atom-ph]; PDF
  11. V. Novičenko, J. Ruseckas, and E. Anisimovas, Quantum dynamics in potentials with fast spatial oscillations, Phys. Rev. A 99, 043608 (2019). arXiv 1903.04971 [quant-ph]; PDF
  12. A. Kononovicius, J. Ruseckas, Order book model with herd behavior exhibiting long-range memory, Physica A 525, 171 (2019). arXiv 1809.02772 [q-fin.ST]; PDF
  13. H. R. Hamedi, J. Ruseckas, E. Paspalakis, and G. Juzeliūnas, Transfer of optical vortices in coherently prepared media, Phys. Rev. A 99, 033812 (2019). arXiv 1811.10647 [quant-ph]; PDF
  14. H. R. Hamedi, V. Kudriašov, J. Ruseckas, and G. Juzeliūnas, Azimuthal modulation of electromagnetically induced transparency using structured light, Opt. Express 26(22), 28249-28262 (2018). arXiv 1807.01803 [physics.atom-ph]; PDF
  15. J. Ruseckas, V. Kudriašov, A. Mekys, T. Andrijauskas, Ite A. Yu, and G. Juzeliūnas, Nonlinear quantum optics for spinor slow light, Phys. Rev. A 98, 013846 (2018). arXiv 1805.00144 [quant-ph]; PDF
  16. H. R. Hamedi, J. Ruseckas, and G. Juzeliūnas, Exchange of optical vortices using an electromagnetically-induced-transparency–based four-wave-mixing setup, Phys. Rev. A 98, 013840 (2018). arXiv 1807.01685 [physics.optics]; PDF
  17. J. Armaitis, J. Ruseckas, H. T. C. Stoof, and R. A. Duine, Spin Hall mode in a trapped thermal Rashba gas, Phys. Rev. A 96, 053625 (2017). PDF
  18. V. Juknevičius, J. Ruseckas, and J. Armaitis, Large scale spatio-temporal behaviour in surface growth, Eur. Phys. J. B 90, 163 (2017). PDF
  19. H. R. Hamedi, J. Ruseckas and G. Juzeliūnas, Electromagnetically induced transparency and nonlinear pulse propagation in a combined tripod and Λ atom-light coupling scheme, J. Phys. B: At. Mol. Opt. Phys. 50, 185401 (2017). PDF
  20. J. Armaitis, J. Ruseckas and E. Anisimovas, Phase-space curvature in spin-orbit-coupled ultracold atomic systems, Phys. Rev. A 95, 043616 (2017). arXiv 1702.03298 [cond-mat.quant-gas]; PDF
  21. J. Armaitis, J. Ruseckas, and G. Juzeliūnas, Omnidirectional spin Hall effect in a Weyl spin-orbit-coupled atomic gas, Phys. Rev. A 95, 033635 (2017). arXiv 1701.08773 [cond-mat.quant-gas]; PDF
  22. J. Ruseckas, I. A. Yu, and G. Juzeliūnas, Creation of two-photon states via interactions between Rydberg atoms during light storage, Phys. Rev. A 95, 023807 (2017). arXiv 1606.00562 [quant-ph]; PDF
  23. R. Kazakevičius and J. Ruseckas, Influence of external potentials on heterogeneous diffusion processes, Phys. Rev. E 94, 032109 (2016). arXiv 1608.07335 [cond-mat.stat-mech]; PDF
  24. S.-W. Su, S.-C. Gou, Q. Sun, L. Wen, W.-M. Liu, A.-C. Ji, J. Ruseckas, and G. Juzeliūnas, Rashba-type spin-orbit coupling in bilayer Bose-Einstein condensates, Phys. Rev. A 93, 053630 (2016). arXiv 1603.09043 [cond-mat.quant-gas]; PDF
  25. J. Ruseckas, R. Kazakevičius and B. Kaulakys, 1/f noise from point process and time-subordinated Langevin equations, J. Stat. Mech. 2016, 054022 (2016). arXiv 1512.03910 [cond-mat.stat-mech]; PDF
  26. B. Kaulakys, M. Alaburda and J. Ruseckas, Modeling of long-range memory processes with inverse cubic distributions by the nonlinear stochastic differential equations, J. Stat. Mech. 2016, 054035 (2016). PDF
  27. J. Ruseckas, Canonical ensemble in non-extensive statistical mechanics, q>1, Physica A 458, 210 (2016). arXiv 1602.06122 [cond-mat.stat-mech]; PDF
  28. J. Ruseckas, R. Kazakevičius and B. Kaulakys, Coupled nonlinear stochastic differential equations generating arbitrary distributed observable with 1/f noise, J. Stat. Mech. 2016, 043209 (2016). arXiv 1603.03013 [cond-mat.stat-mech]; PDF
  29. A. Kononovicius, J. Ruseckas, Stochastic dynamics of N correlated binary variables and non-extensive statistical mechanics, Phys. Lett. A 380, 1582 (2016). arXiv 1601.06968 [cond-mat.stat-mech]; PDF
  30. J. Ruseckas, Canonical ensemble in non-extensive statistical mechanics, Physica A 447, 85 (2016). arXiv 1503.03778 [cond-mat.stat-mech]; PDF
  31. B. Kaulakys, M. Alaburda and J. Ruseckas, 1/f noise from the nonlinear transformations of the variables, Mod. Phys. Lett. B 29, 1550223 (2015). PDF
  32. R. Kazakevičius, J. Ruseckas, Power-law statistics from nonlinear stochastic differential equations driven by Lévy stable noise, Chaos, Solitons & Fractals 81, Part B, 432-442 (2015). PDF
  33. R. Kazakevičius, J. Ruseckas, Anomalous diffusion in nonhomogeneous media: Power spectral density of signals generated by time-subordinated nonlinear Langevin equations, Physica A 438, 210 (2015). arXiv 1506.09059 [cond-mat.stat-mech]; PDF
  34. S.-W. Su, S.-C. Gou, I.-K. Liu, I. B. Spielman, L. Santos, A. Acus, A. Mekys, J. Ruseckas, and G. Juzeliūnas, Position-dependent spin-orbit coupling for ultracold atoms, New. J. Phys. 17, 033045 (2015). PDF
  35. R. Kazakevičius, J. Ruseckas, Power law statistics in the velocity fluctuations of Brownian particle in inhomogeneous media and driven by colored noise, J. Stat. Mech. 2015, P02021 (2015). arXiv 1502.03268 [cond-mat.stat-mech]; PDF
  36. A. Kononovicius, J. Ruseckas, Nonlinear GARCH model and 1/f noise, Physica A 427, 74 (2015). arXiv 1412.6244 [q-fin.ST]; PDF
  37. J. Ruseckas, Probabilistic model of N correlated binary random variables and non-extensive statistical mechanics, Phys. Lett. A 379, 654 (2015). arXiv 1408.0088 [cond-mat.stat-mech]; PDF
  38. M.-J. Lee, J. Ruseckas, Ch.-Y. Lee, V. Kudriašov, K.-F. Chang, H.-W. Cho, G. Juzeliūnas and I. A. Yu, Experimental demonstration of spinor slow light, Nat. Commun. 5, 5542 (2014). PDF, Supplementary information.
  39. V. Kudriašov, J. Ruseckas, A. Mekys, A. Ekers, N. Bezuglov, and G. Juzeliūnas, Superluminal two-color light in a multiple Raman gain medium, Phys. Rev. A 90, 033827 (2014). arXiv 1409.7882 [quant-ph]; PDF
  40. A. Kononovicius, J. Ruseckas, Continuous transition from the extensive to the non-extensive statistics in an agent-based herding model, Eur. Phys. J. B 87, 169 (2014). arXiv 1404.0856 [physics.soc-ph]; PDF
  41. R. Kazakevičius, J. Ruseckas, Lévy flights in inhomogeneous environments and 1/f noise, Physica A 411, 95 (2014). arXiv 1403.0409 [cond-mat.stat-mech]; PDF
  42. J. Ruseckas and B. Kaulakys, Scaling properties of signals as origin of 1/f noise, J. Stat. Mech. 2014, P06005 (2014). arXiv 1402.2523 [cond-mat.stat-mech]; PDF
  43. A. Celi, P. Massignan, J. Ruseckas, N. Goldman, I. B. Spielman, G. Juzeliūnas, and M. Lewenstein, Synthetic Gauge Fields in Synthetic Dimensions, Phys. Rev. Lett. 112, 043001 (2014). PDF
  44. A. Orlof, J. Ruseckas, and I. V. Zozoulenko, Effect of zigzag and armchair edges on the electronic transport in single-layer and bilayer graphene nanoribbons with defects, Phys. Rev. B 88, 125409 (2013). PDF
  45. R. Juršėnas and J. Ruseckas, Bound states of the spin-orbit coupled ultracold atom in a one-dimensional short-range potential, J. Math. Phys. 54, 051901 (2013). PDF
  46. J. Ruseckas, V. Kudriašov, I. A. Yu, and G. Juzeliūnas, Transfer of orbital angular momentum of light using two-component slow light, Phys. Rev. A 87, 053840 (2013). arXiv 1306.1709 [quant-ph]; PDF
  47. J. Ruseckas and B. Kaulakys, Intermittency in relation with 1/f noise and stochastic differential equations, Chaos 23, 023102 (2013). arXiv 1111.1306 [nlin.CD]; PDF
  48. J. Ruseckas, V. Gontis, and B. Kaulakys, Nonextensive statistical mechanics distributions and dynamics of financial observables from the nonlinear stochastic differential equations, Advances in Complex Systems 15 Suppl. 1, 1250073 (2012). PDF
  49. J. Ruseckas, A. Mekys, G. Juzeliūnas, and I. V. Zozoulenko, Electron transmission through graphene monolayer-bilayer junction: An analytical approach, Lithuanian. J. Phys. 52 (1), 70 (2012). PDF
  50. J. Ruseckas, B. Kaulakys and V. Gontis, Herding model and 1/f noise, EPL 96, 60007 (2011). arXiv 1111.1306 [nlin.AO]; PDF
  51. J. Ruseckas and B. Kaulakys, Tsallis distributions and 1/ f noise from nonlinear stochastic differential equations, Phys. Rev. E 84, 051125 (2011). arXiv 1111.2995 [cond-mat.stat-mech]; PDF
  52. J. Ruseckas, V. Kudriašov, G. Juzeliūnas, R. G. Unanyan, J. Otterbach, and M. Fleischhauer, Photonic-band-gap properties for two-component slow light, Phys. Rev. A 83, 063811 (2011). arXiv 1103.5650 [quant-ph]; PDF
  53. J. Ruseckas, A. Mekys, and G. Juzeliūnas, Optical vortices of slow light using a tripod scheme, J. Opt. 13, 064013 (2011). arXiv 1104.5536 [quant-ph]; PDF
  54. J. Ruseckas, A. Mekys, and G. Juzeliūnas, Slow polaritons with orbital angular momentum in atomic gases, Phys. Rev. A 83, 023812 (2011). arXiv 1102.4321 [quant-ph]; PDF
  55. J. Ruseckas, G. Juzeliūnas, and I. V. Zozoulenko, Spectrum of π electrons in bilayer graphene nanoribbons and nanotubes: An analytical approach, Phys. Rev. B 83, 035403 (2011). arXiv 1010.1673 [cond-mat.mes-hall]; PDF
  56. R. G. Unanyan, J. Otterbach, M. Fleischhauer, J. Ruseckas, V. Kudriašov, and G. Juzeliūnas, Spinor Slow-Light and Dirac Particles with Variable Mass, Phys. Rev. Lett. 105, 173603 (2010). PDF
  57. G. Juzeliūnas, J. Ruseckas, and J. Dalibard, Generalized Rashba-Dresselhaus spin-orbit coupling for cold atoms, Phys. Rev. A 81, 053403 (2010). arXiv 1002.0578 [cond-mat.quant-gas]; PDF
  58. J. Ruseckas, A. Mekys, and G. Juzeliūnas, Manipulation of Slow Light with Orbital Angular Momentum in Cold Atomic Gases, Opt. Spektrosc. 108, 438 (2010). PDF
  59. J. Ruseckas and B. Kaulakys, 1/f noise from nonlinear stochastic differential equations, Phys. Rev. E 81, 031105 (2010). arXiv 1002.4316v1 [nlin.AO]; PDF
  60. J. Otterbach, J. Ruseckas, R. G. Unanyan, G. Juzeliūnas, and M. Fleischhauer, Effective Magnetic Fields for Stationary Light, Phys. Rev. Lett. 104, 033903 (2010). PDF
  61. V. Gontis, J. Ruseckas, A. Kononovičius, A long-range memory stochastic model of the return in financial markets, Physica A 389, 100 (2010). PDF
  62. B. Kaulakys, M. Alaburda, V. Gontis, and J. Ruseckas, Modeling long-memory processes by stochastic difference equations and superstatistical approach, Brazil. J. Phys. 39, 453 (2009). PDF
  63. J. Y. Vaishnav, J. Ruseckas, C. W. Clark, and G. Juzeliūnas, Spin Field Effect Transistors with Ultracold Atoms, Phys. Rev. Lett. 101, 265302 (2008). arXiv 0807.3067v1 [cond-mat.mes-hall]; PDF
    Erratum:
    J. Y. Vaishnav, J. Ruseckas, C. W. Clark, and G. Juzeliūnas, Publisher's Note: Spin Field Effect Transistors with Ultracold Atoms [Phys. Rev. Lett. 101, 265302 (2008)], Phys. Rev. Lett. 103, 129902(E) (2009). PDF
  64. G. Juzeliūnas, J. Ruseckas, A. Jacob, L. Santos, and P. Öhberg, Double and Negative Reflection of Cold Atoms in Non-Abelian Gauge Potentials, Phys. Rev. Lett. 100, 200405 (2008). arXiv 0801.2056v1 [cond-mat.other]; PDF
  65. V. Gontis, B. Kaulakys, J. Ruseckas, Trading activity as driven Poisson process: Comparison with empirical data, Physica A 387, 3891 (2008). PDF
  66. G. Juzeliūnas, J. Ruseckas, M. Lindberg, L. Santos, and P. Öhberg, Quasirelativistic behavior of cold atoms in light fields, Phys. Rev. A 77, 011802(R) (2008). arXiv 0712.1677v1 [cond-mat.mes-hall]; PDF
  67. J. Ruseckas, G. Juzeliūnas, P. Öhberg, and S. M. Barnett, Polarization rotation of slow light with orbital angular momentum in ultracold atomic gases, Phys. Rev. A 76, 053822 (2007). arXiv 0706.0477v1 [cond-mat.other]; PDF
  68. J. Ruseckas and B. Kaulakys, Quantum trajectory method for the quantum Zeno and anti-Zeno effects, Phys. Rev. A 73, 052101 (2006). arXiv quant-ph/0605022; PDF
  69. B. Kaulakys, J. Ruseckas, V. Gontis, M. Alaburda, Nonlinear stochastic models of 1/f noise and power-law distributions, Physica A 365, 217 (2006). PDF
  70. J. Ruseckas, G. Juzeliūnas, P. Öhberg, and M. Fleischhauer, Ligt-induced effective magnetic fields for ultracold atoms in planar geometries, Phys. Rev. A 73, 025602 (2006). PDF
  71. P. Öhberg, G. Juzeliūnas, J. Ruseckas, and M. Fleischhauer, Filled Landau levels in neutral quantum gases, Phys. Rev. A 72, 053632 (2005). arXiv cond-mat/0509766; PDF
  72. G. Juzeliūnas, J. Ruseckas, and P. Öhberg, Effective magnetic fields induced by EIT in ultra-cold atomic gases, J. Phys. B: At. Mol. Opt. Phys. 38, 4171 (2005). arXiv quant-ph/0511087; PDF
  73. J. Ruseckas, G. Juzeliūnas, P. Öhberg, and M. Fleischhauer, Non-Abelian Gauge Potentials for Ultracold Atoms with Degenerate Dark States, Phys. Rev. Lett. 95, 010404 (2005). arXiv cond-mat/0503187; PDF
  74. G. Juzeliūnas, P. Öhberg, J. Ruseckas, and A. Klein, Effective magnetic fields in degenerate atomic gases induced by light beams with orbital angular momenta, Phys. Rev. A 71, 053614 (2005). arXiv cond-mat/0412015; PDF
  75. B. Kaulakys and J. Ruseckas, Stochastic nonlinear differential equation generating 1/f noise, Phys. Rev. E 70, 020101 (2004). arXiv cond-mat/0408507; PDF
  76. J. Ruseckas and B. Kaulakys, General expression for the quantum Zeno and anti-Zeno effects, Phys. Rev. A 69 (3), 032104 (2004). arXiv quant-ph/0403123; PDF
  77. J. Ruseckas and B. Kaulakys, Weak measurement of arrival time, Phys. Rev. A 66 (5), 052106 (2002). arXiv quant-ph/0307006; PDF
  78. J. Ruseckas, Influence of the detector's temperature on the quantum Zeno effect, Phys. Rev. A 66 (1), 012105 (2002). arXiv quant-ph/0307005; PDF
  79. J. Ruseckas, Influence of the finite duration of the measurement on the quantum Zeno effect, Phys. Lett. A 291, 185-189 (2001). arXiv quant-ph/0202157; PDF
  80. J. Ruseckas and B.Kaulakys, Real measurements and quantum Zeno effect, Phys. Rev. A 63 (6), 062103 (2001). arXiv quant-ph/0105138; PDF
  81. J. Ruseckas and B. Kaulakys, Time problem in quantum mechanics and weak measurements, Phys. Lett. A 287, 297-303 (2001). arXiv quant-ph/0202156; PDF
  82. J. Ruseckas, Possibility of tunneling time determination, Phys. Rev. A 63 (5), 052107 (2001). arXiv quant-ph/0101136; PDF

Other refereed journal articles

  1. J. Ruseckas, G. Molis, and H. Bogucka, MIMO Beam Selection in 5G Using Neural Networks, Intl. Journal of Electronic and Telecommunications 67 (4), 693-698 (2021). PDF
  2. G. Juzeliūnas, J. Ruseckas, P. Öhberg, and M. Fleischhauer, Formation of solitons in atomic Bose-Einstein condensates by dark-state adiabatic passage, Lithuanian. J. Phys. 47 (3), 351-360 (2007). arXiv 0710.1702v1 [cond-mat.soft]; PDF
  3. G. Juzeliūnas, J. Ruseckas, and P. Öhberg, Effective Magnetic Fields in Ultracold Atomic Gases, Lithuanian. J. Phys. 45 (3), 191 (2005). PDF
  4. J. Ruseckas and B. Kaulakys, Time problem in quantum mechanics and its analysis by the concept of weak measurement, Lithuanian. J. Phys. 44 (3), 161-182 (2004). PDF
  5. V. Gontis, B. Kaulakys, M. Alaburda and J. Ruseckas, Evolution of complex systems and 1/f noise: from physics to financial markets, Solid State Phenomena, 97-98, 65-70 (2004). PDF
  6. J. Ruseckas, B. Kaulakys, and M. Alaburda, Modelling of 1/f noise by sequences of stochastic pulses of different duration, Lithuanian. J. Phys. 43, 223-228 (2003).

Conference proceedings

  1. H. Bouma, A. Reuter, P. Brouwer, M. George, J. M. Ferryman, J. Boyle, A. Juršėnas, A. Karinsalo, R. Pruim, A. van Rooijen, J.-M. ten Hove, J. van Mil, D. Gicic, G. Goller, E. Ledinauskas, J. Ruseckas, B. Kromhout, H. de Moel, and N. Dolstra, Authentication of travel and breeder documents, Proc. SPIE 11869, Counterterrorism, Crime Fighting, Forensics, and Surveillance Technologies V, 118690G, 12 September (2021). doi: 10.1117/12.2598143 PDF
  2. J. Ruseckas, G. Molis, A. Mackutė-Varoneckienė and T. Krilavičius, Multi-carrier Signal Detection using Convolutional Neural Networks, 2019 International SoC Design Conference (ISOCC), Jeju, Korea (South), p. 190-191 (2019). doi: 10.1109/ISOCC47750.2019.9078534 PDF
  3. R. Kazakevičius, J. Ruseckas, Influence of External Potentials on Heterogeneous Diffusion Processes, Noise and Fluctuations (ICNF), 2017 International Conference on (2017). doi: 10.1109/ICNF.2017.7985943 ; PDF
  4. M.-J. Lee, J. Ruseckas, C.-Y. Lee, V. Kudriašov, K.-F. Chang, H.-W. Cho, G. Juzeliūnas, I. A. Yu, Experimental demonstration of spinor slow light, Proc. SPIE 9763, 97630P (2016). PDF
  5. J. Ruseckas, B. Kaulakys, Intermittency generating 1/f noise, Noise and Fluctuations (ICNF), 2013 22nd International Conference on (2013). doi: 10.1109/ICNF.2013.6578906 ; PDF
  6. J. Ruseckas, B. Kaulakys, 1/f noise and q-Gaussian distribution from nonlinear stochastic differential equations, Noise and Fluctuations (ICNF), 2013 22nd International Conference on (2013). doi: 10.1109/ICNF.2013.6578907 ; PDF
  7. B. Kaulakys, R. Kazakevičius, J. Ruseckas, Modeling Gaussian and non-Gaussian 1/f noise by the linear stochastic differential equations, Noise and Fluctuations (ICNF), 2013 22nd International Conference on (2013). doi: 10.1109/ICNF.2013.6578944 ; PDF
  8. B. Kaulakys, J. Ruseckas, Solutions of nonlinear stochastic differential equations with 1/f noise power spectrum, IEEE Conferences: Noise and Fluctuations (ICNF), 2011 21st International Conference on, p. 192-195 (2011). PDF
  9. G. Juzeliūnas, J. Ruseckas, D. L. Campbel and I. B. Spielman, Engineering Dresselhaus spin-orbit coupling for cold atoms in a double tripod configuration, Proc. SPIE 7950, 79500M (2011). PDF
  10. V. Gontis, B. Kaulakys and J. Ruseckas, Nonlinear stochastic differential equation as the background of financial fluctuations, AIP Conf. Proc. 1129, 563-566 (2009). PDF
  11. B. Kaulakys, M. Alaburda and J. Ruseckas, Modeling Non-Gaussian 1/f noise by the stochastic differential equations, AIP Conf. Proc. 922, 439-442 (2007). PDF
  12. B. Kaulakys, M. Alaburda, V. Gontis, T. Meškauskas and J. Ruseckas, Modeling of flows with the power-law spectral densities and power-law distributions of flow's intensities, Traffic and Granular Flow'05, Proc. Intern. Conf., Berlin, 10-12 October 2005, Editors.: A. Schadschneider, T. Poschel, R. Kuhne, M. Schreckenberg and D. E. Wolf, Springer-Verlag, Berlin, p. 603-611 (2007). PDF
  13. V. Gontis, B. Kaulakys and J. Ruseckas, Point process models of 1/f noise and Internet traffic, AIP Conf. Proc. 776, 144-149 (2005). PDF

Other Publications

  1. A. Juršėnas, K. Karlauskas, E. Ledinauskas, G. Maskeliūnas, D. Rondomanskas, J. Ruseckas, The Role of AI in the Battle Against Disinformation, Riga: NATO Strategic Communications Centre of Excellence (2022). ISBN 978-9934-619-05-2 ; PDF
  2. A. Juršėnas, K. Karlauskas, E. Ledinauskas, G. Maskeliūnas, J. Ruseckas, The Double-Edged Sword of AI: Enabler of Disinformation, Riga: NATO Strategic Communications Centre of Excellence (2021). ISBN 978-9934-564-78-9 ; PDF
  3. Vygintas Gontis, Julius Ruseckas and Aleksejus Kononovičius, A Non-Linear Double Stochastic Model of Return in Financial Markets, Stochastic Control, Chris Myers (Ed.), ISBN: 978-953-307-121-3, Sciyo (2010). Available from: http://www.intechopen.com/articles/show/title/a-non-linear-double-stochastic-model-of-return-in-financial-markets.
    PDF; PDF of full book.

Conferences

  1. J. Ruseckas, G. Juzeliūnas, and I. A. Yu, Nonlinear quantum optics for spinor slow light, Quantum Optics IX, Gdańsk, Poland, 17-23 September 2017. (oral presentation)
  2. J. Ruseckas, J. Armaitis and E. Anisimovas, Phase-space curvature in spin-orbit coupled ultracold atomic systems, Bose-Einstein Condensation 2017 – Frontiers in Quantum Gases, Sant Feliu de Guixols, Spain, 2-8 September 2017. (poster)
  3. J. Ruseckas, I. A. Yu, and G. Juzeliūnas, Engineering of correlated photon pairs via interaction between Rydberg atoms during the storage of slow light, Quantum Technologies Conference VII: Manipulating photons, atoms, and molecules, Warszawa, Poland, 20-25 September 2016. (oral presentation)
  4. J. Ruseckas, Spin-orbit coupling for ultracold atoms and for slow light, Synthetic Topological Quantum Matter, Beijing, People's Republic of China, 1-8 August 2016. (invited talk)
  5. J. Ruseckas and B. Kaulakys, 1/f noise arising from time-subordinated Langevin equations, 7th International Conference on Unsolved Problems on Noise, Barcelona, Spain, 13-17 July 2015. (oral presentation)
  6. J. Ruseckas, G. Juzeliūnas, I. Spielman, A. Celi, P. Massignan, N. Goldman, M. Lewenstein, Artificial gauge fields in extra dimensions, 79th Annual Meeting of the DPG and DPG Spring Meeting, Berlin, Germany, 15-20 March, 2015. (oral presentation)
  7. J. Ruseckas, R. Kazakevičius, B. Kaulakys, Power-law statistics from nonlinear stochastic differential equations driven by Lévy stable noise, International Conference on Statistical Physics SigmaPhi 2014, Rhodes, Greece, 7-11 July 2014. Abstracts, p. 143. (plenary talk)
  8. J. Ruseckas, G. Juzelūnas, I. Spielman, A. Celi, P. Massignan, M. Lewenstein, Artificial gauge fields in extra dimensions, Quantum Technologies Conference IV: Manipulating photons, atoms, and molecules, Warszawa, Poland, 15-20 September 2013. (oral presentation)
  9. J. Ruseckas, G. Juzeliūnas, I. Spielman, N. Goldman, A. Celi, P. Massignan, M. Lewenstein, Synthetic magnetic flux in optical lattices with extra dimension, 2nd TLL-COLIMA-FOTONIKA Joint Workshop on Manipulation of Light by Matter and Matter by Light, Vilnius, Lithuania, 1-5 September, 2013. (oral presentation)
  10. J. Ruseckas, B. Kaulakys, Nonlinear stochastic differential equations and 1/f noise, 3rd International Workshop on Statistical Mechanics and Dynamical Systems, Turunç/Marmaris, Turkey, 27 August - 2 September 2012. (invited talk)
  11. J. Ruseckas, V. Kudriašov, and G. Juzeliūnas, Storing and releasing of multi-component slow light in atomic media, Quantum Technologies Conference II: Manipulating photons, atoms, and molecules, Kraków, Poland, 30 August - 4 September 2011. (oral presentation)
  12. J. Ruseckas, V. Kudriašov, G. Juzeliūnas, R. G. Unanyan, J. Otterbach, M. Fleischhauer, Multicomponent Slow Light, Gordon Research Conference on Atomic Physics, Mount Snow Resort in West Dover, VT, United States, 26 June - 1 July, 2011. (poster)
  13. J. Ruseckas, V. Gontis, and B. Kaulakys, Solutions of nonlinear stochastic differential equations with long-range power-law distributions, 75th Annual Meeting of the DPG and DPG Spring Meeting, Dresden, Germany, 13-18 March, 2011. (oral presentation)
  14. J. Ruseckas, G. Juzeliūnas, and I. Zozoulenko, An analytical approach to the spectrum of π electrons in bilayer graphene nanoribbons and nanotubes, 75th Annual Meeting of the DPG and DPG Spring Meeting, Dresden, Germany, 13-18 March, 2011. (poster)
  15. J. Ruseckas, Light-induced Artificial Magnetic Field for Cold Atoms, Alexander von Humboldt Forum Science & Society in Modern Europe Dedicated to Millenium of Lithuania and 50 Years of the Laser, Vilnius, Lithuania, 23-26 September 2010. (oral presentation)
  16. J. Ruseckas, G. Juzeliūnas, Light-induced Abelian and non-Abelian gauge potentials for cold atoms, Quantum Technologies Conference: Manipulating photons, atoms, and molecules, Toruń, Poland, 29 August - 3 September 2010. (oral presentation)
  17. J. Ruseckas, Light-induced Abelian and non-Abelian gauge potentials for cold atoms, International Workshop on Quantum Gases in Synthetic Gauge Fields, Tsinghua university, Beijing, People's Republic of China, 23-28 August 2010. (invited talk)
  18. J. Ruseckas, V. Kudriašov, G. Juzeliūnas, Multicomponent slow and stationary polaritons in atomic gases, ICREA Workshop on Quantum Gauges Theories and Ultra Cold Atoms, Sant Benet, Barcelona, Spain, 1-4 September 2009. (poster)
  19. J. Ruseckas and B. Kaulakys, Modeling Tsallis distributions by nonlinear stochastic differential equations with applications to financial markets, Applications of Physics in Financial Analysis 7th Intern. Conf., Tokyo, Japan, 1-5 March 2009. (oral presentation)
  20. V. Gontis, B. Kaulakys, M. Alaburda, and J. Ruseckas, Modeling point processes by the stochastic differential equation, 9th International Vilnius Conference on Probability Theory and Mathematical Statistics, 25-30 June, 2006 Vilnius, Lithuania. (oral presentation)

PhD Thesis

Measurement Models for Quantum Zeno and anti-Zeno Effects and Time Determination in Quantum Mechanics
full PhD thesis (PDF); summary in lithuanian (PDF)