NERG Articles published in peer reviewed international journals
- A. Aydin, J. Fransson and A. Sisman, "Quantum shape oscillations in the thermodynamic properties of confined electrons in core-shell nanostructures", J. Phys.: Condens. Matter, 34, 025301, (2022).
- A. Sisman and J. Fransson, "Fractional integral representation in statistical thermodynamics of confined systems", Phys. Rev. E, 104, 054110, (2021).
- A. Sisman, A. Aydin and J. Fransson, "Thermoshape effect for energy harvesting with nanostructures", J. Phys. D: Appl. Phys., 53, 375501, (2020).
- A. Aydin, A. Sisman and R. Kosloff, "Landauer's principle in a quantum Szilard engine without Maxwell's demon", Entropy, 22, 294, (2020) [Open Access].
- A. Aydin, J. Fransson and A. Sisman, "Thermosize voltage induced in a ballistic graphene nanoribbon junction", J. Appl. Phys., 126, 104302, (2019) [Open Access], [Editor's Pick].
- A. Aydin, T. Oikonomou, G. B. Bagci and A. Sisman, "Discrete and Weyl density of states for photonic dispersion relation", Phys. Scr., 94, 105001, (2019).
- A. Aydin and A. Sisman, "Quantum shape effects and novel thermodynamic behaviors at nanoscale", Phys. Lett. A, 383, 655-665, (2019).
- C. Firat, A. Sisman and A. Aydin, "Characterization of density oscillations in confined and degenerate Fermi gases", Mod. Phys. Lett. B, 32, 1850393, (2018).
- A. Aydin and A. Sisman, "Quantum oscillations in confined and degenerate Fermi gases. II. The phase diagram and applications of half-vicinity model", Phys. Lett. A, 382, 1813-1817, (2018).
- A. Aydin and A. Sisman, "Quantum oscillations in confined and degenerate Fermi gases. I. Half-vicinity model", Phys. Lett. A, 382, 1807-1812, (2018).
- S. Karabetoglu and A. Sisman, "Thermosize potentials in semiconductors", Phys. Lett. A, 381, 2704-2708 (2017).
- A. Aydin and A. Sisman, "Discrete Density of States", Phys. Lett. A, 380, 1236-1240, (2016).
- C. Firat, "Thermodynamic properties of a photon gas confined in hypothetical arbitrary-shaped perfectly reflecting nano-scale geometries, Mosc. Univ. Phys. 71 (1), 70-74, (2016).
- S. Karabetoglu, A. Sisman and Z. F. Ozturk, "An analytical solution for quantum size effects on Seebeck coefficient", Phys. Scr., 91, 035803, (2016).
- A. Aydin and A. Sisman, "Dimensional Transitions in Thermodynamic Properties of Ideal Maxwell-Boltzmann Gases", Phys. Scr., 90, 045208, (2015).
- A. Aydin and A. Sisman, "Discrete Nature of Thermodynamics in Confined Ideal Fermi Gases", Phys. Lett. A, 378, 2001-2007 (2014).
- C. Firat and A. Sisman, "Quantum forces of a gas confined in nano structures", Phys. Scr. 87:4, 045008 (2013).
- A. Sisman and G. Babac, "Quantum Size Effects on Classical Thermosize Effects", J. Continuum Mech. Thermo., (2012).
- G. Babac and A. Sisman, "Classical thermosize effects in degenerate quantum gases", J. Comp. and Theo. Nanoscience, 8 (11) pp.1-4, (2011).
- G. Babac and A. Sisman, "Thermodynamic cycles based on classical thermosize effects", J. Comp. and Theo. Nanoscience,8 (9) pp.1-7, (2011).
- C. Firat, A. Sisman and Z. F. Ozturk, "Effects of Particle-Wall Interactions on the Thermodynamic Behavior of Gases at the Nano Scale", Int. J. Thermo.,14, 4, pp.155-161, (2011).
- Z. F. Ozturk, A. Sisman and C. Firat, "Quantum Effects on Gas Diffusion at the Nano Scale", Int. J. Thermo., 14, 4, pp.163-166, (2011).
- C. Firat, A Sisman, Z. F. Ozturk, "Thermodynamics of gases in nano cavities", Energy, 5:2, pp 814-819 (2010).
- Z. F. Ozturk and A. Sisman, "Quantum size effects on thermal and potential conductivities of ideal gases", Phys. Scr., 80, 065402 (2009).
- C. Firat, A. Sisman, "Universality of the quantum boundary layer for a Maxwellian gas", Phys. Scr., 79, 065002 (5pp), (2009).
- A. Sisman, Z. F. Ozturk and C. Firat, "Quantum boundary layer: a non-uniform density distribution of an ideal gas in thermodynamic equilibrium", Phys. Lett. A., 362, 16-20 (2007).
- A. Sisman, "Surface dependence in thermodynamics of ideal gases", J. Phys. A: Math. Gen. 37, 11353-11361, (2004).
- A. Sisman and I. Muller, "The Casimir-like size effects in ideal gases", Phys. Lett. A, 320, 360-366, (2004).