We propose and provide experimental evidence of a mechanism able to support negative intrinsic effective mass. The idea is to use a shape-sensitive nonlinearity to change the sign of the mass in the leading linear propagation equation. Intrinsic negative-mass dynamics is reported for light beams in a ferroelectric crystal substrate, where the diffusive photorefractive nonlinearity leads to a negative-mass Schrödinger equation. The signature of inverted dynamics is the observation of beams repelled from strongly guiding integrated waveguides irrespective of wavelength and intensity and suggests shape-sensitive nonlinearity as a basic mechanism leading to intrinsic negative mass.
Intrinsic negative mass from nonlinearity / DI MEI, Fabrizio; Caramazza, P.; Pierangeli, Davide; DI DOMENICO, Giuseppe; Ilan, H.; Agranat, A. J.; Di Porto, P.; DEL RE, Eugenio. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - STAMPA. - 116:15(2016), p. 153902. [10.1103/PhysRevLett.116.153902]
Intrinsic negative mass from nonlinearity
DI MEI , FABRIZIO;PIERANGELI, DAVIDE;DI DOMENICO, GIUSEPPE;DEL RE, EUGENIO
2016
Abstract
We propose and provide experimental evidence of a mechanism able to support negative intrinsic effective mass. The idea is to use a shape-sensitive nonlinearity to change the sign of the mass in the leading linear propagation equation. Intrinsic negative-mass dynamics is reported for light beams in a ferroelectric crystal substrate, where the diffusive photorefractive nonlinearity leads to a negative-mass Schrödinger equation. The signature of inverted dynamics is the observation of beams repelled from strongly guiding integrated waveguides irrespective of wavelength and intensity and suggests shape-sensitive nonlinearity as a basic mechanism leading to intrinsic negative mass.File | Dimensione | Formato | |
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