Ludzie

dr hab. Leszek Józefowski
Adiunkt z dr hab.
Laboratorium zimnych atomów przy powierzchnii
Pokój: C-1-17
Telefon: +48 (12) 664 4709
mail: leszek.jozefowski@uj.edu.pl
Publikacje
2014
[1] J. Fiutowski, T. Kawalec et al.
Leakage radiation spectroscopy of organic/dielectric/metal systems: influence of SiO2 on exciton-surface plasmon polariton interaction
In Proc. SPIE 9126,912633-912633-6 (2014).
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[2] O. Kostiučenko, J. Fiutowski et al.
Surface plasmon polariton dispersion relation at organic/dielectric/metal interfaces
In Optics Communications 331,77 - 81 (2014).
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[3] O. Kostiucenko, J. Fiutowski et al.
Surface plasmon polariton dispersion relation at organic/dielectric/metal interfaces
In Optics Comm. 331,77--81 (2014).
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[4] J. Fiutowski, T. Kawalec et al.
Leakage radiation spectroscopy of organic/dielectric/metal systems: influence of SiO2 on exciton-surface plasmon polariton interaction
In Nanophotonics V 9126,912633 (2014).
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2012
[5] L. Jozefowski, J. Fiutowski et al.
Leakage radiation spectroscopy of organic nanofibers on metal films: Evidence for exciton-surface plasmon polariton interaction
In Plasmonics: Metallic Nanostructures Their Opt. Properties X 8457,84571A (2012).
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2011
[6] K.E. Pankin, J.B. Nielsen et al.
Surface chemical reactions induced by molecules electronically-excited in the gas phase
In Lat 2010: Int. Conference On Lasers, Applications, Technologies 7994,79940Q (2011).
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2008
[7] J. Fiutowski, V.G. Bordo et al.
Light scattering from an ordered array of needle-shaped organic nanoaggregates: Evidence for optical mode launching
In Applied Physics Letters 92,- (2008).
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[8] J. Fiutowski, V.G. Bordo et al.
Light scattering from an ordered array of needle-shaped organic nanoaggregates: Evidence for optical mode launching
In Appl. Phys. Lett. 92,073302 (2008).
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2007
[9] T. Kawalec, L. Józefowski et al.
Spectroscopic measurements of the evanescent wave polarization state
In Optics Communications 274,341 - 346 (2007).
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[10] L. Józefowski, J. Fiutowski et al.
Direct measurement of the evanescent-wave polarization state
In J. Opt. Soc. Am. B 24,624--628 (2007).
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[11] T. Kawalec, V.G. Bordo et al.
Two-photon evanescent-volume wave monitoring of desorbing Cs atoms
In Chemical Physics 332,102 - 107 (2007).
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2006
[12] T. Kawalec, M.J. Kasprowicz et al.
Dynamics of laser-induced cesium atom desorption from porous glass
In Chemical Physics Letters 420,291-295 (2006).
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2005
[13] J. Brewer, C. Maibohm et al.
A 3D view on free-floating, space-fixed and surface-bound para -phenylene nanofibres
In Nanotechnology 16,2396 (2005).
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2004
[14] T. Kawalec, M.J. Kasprowicz et al.
Zeeman Effect Observed in the Evan escent Wave
In Acta Physica Polonica A 105,349 (2004).
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[15] M.J. Kasprowicz, T. Dohnalik et al.
Diffusion of rubidium atoms in PDMS thin films
In Chemical Physics Letters 391,191-194 (2004).
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2001
[16] V.G. Bordo, J. Loerke et al.
Two-photon laser spectroscopy of the gas boundary layer in crossed evanescent and volume waves
In Phys. Rev. A 64,012903 (2001).
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1998
[17] K. Kiersnowski, L. Józefowski, T. Dohnalik
Effective optical anisotropy in evanescent wave propagation in atomic vapor
In Phys. Rev. A 57,R4079--R4081 (1998).
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[18] K. Kiersnowski, L. Józefowski, T. Dohnalik
Evanescent light–atom interaction detected by optogalvanic effect
In Optics Communications 150,106 - 110 (1998).
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