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Stamatios Strikos

Publications and source records attributed to Stamatios Strikos.

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Investigating planar Proca metamaterials in nonlinear (2+1)-Electrodynamics

The present work pursues the investigation of the physics of a planar electromagnetic system incorporating nonlinear effects, as well as de Broglie-Proca and Chern-Simons mass terms in vacuum, which can be tuned to describe new planar metamaterials (MTMs) potentially suitable for technological applications. As a result, we observe interesting effects generated by a spatially dispersive profile that emerges from non-linearity. This characterizes the three-dimensional QED vacuum as a nonlocal metamaterial. The constitutive relations are derived, and the dielectric function of the metamaterial (MTM) exhibits spatial dispersion due to the Chern-Simons mass. The dispersion relations are analyzed in terms of applied external electromagnetic fields and both the de Broglie-Proca and Chern-Simons mass parameters. We also notice that, in the special case in which only a background magnetic field is present, this field gives no contribution neither to the dielectric function nor to the spatial dispersion profile, as is the case when both the electric and magnetic fields are present.

physics.optics

Structural metastability and Fermi surface Topology of SrAl2Si2

SrAl2Si2 crystallizes into either a semimetallic, CaAl2Si2-type, αphase or a superconducting, BaZn2P2-type, βphase. We explore possible α--Pc;Tc--> βtransformations by employing pressure- and temperature-dependent free-energy calculations, vibrational spectra calculations, and room-temperature synchrotron X-ray powder diffraction (XRPD) measurements up to 14 GPa using diamond anvil cell. Our theoretical and empirical analyses together with all baric and thermal reported events on both phases allow us to construct a preliminary P-T diagram of transformations. Our calculations show a relatively low critical pressure for the αto βtransition (4.9 GPa at 0 K, 5.0 GPa at 300 K and 5.3 GPa at 900 K); nevertheless, our nonequilibrium analysis indicates that the low-pressure-low-temperature αphase is separated from metastable βphase by a relatively high activation barrier. This analysis is supported by our XRPD data at ambient temperature and P < 14 GPa which shows an absence of βphase even after a compression involving three times the critical pressure. Finally, we briefly consider the change in Fermi surface topology when atomic rearrangement takes place via either transformations among SrAl2Si2-dimorphs or total chemical substitution of Ca by Sr in isomorphous αCaAl2Si2; empirically, manifestation of such topology modification is evident when comparing the evolution of (magneto-)transport properties of members of SrAl2Si2-dimorphs and αisomorphs.

cond-mat.mtrl-sci