We gain hitherto missing access to the spatio-temporal evolution of lattice distortions caused by carrier self-trapping in the class of oxide materials - and beyond. The joint experimental/theoretical tool introduced combines femtosecond mid-infrared probe spectroscopy with potential landscape modeling and is based on the original approach that the vibration mode of a biatomic molecule is capable to probe strongly localized, short-lived lattice distortions in its neighborhood. Optically generated, small, strong-coupling polarons in lithium niobate, mediated by OH− ions present as ubiquitous impurities, serve as a prominent example. Polaron trapping is found to result in an experimentally determined redshift of the OH− stretching mode amount...
We use time-resolved vibrational spectroscopy to probe the structural origins of the remarkably long...
In recent years, metal halide perovskites have generated tremendous interest for optoelectronic appl...
Small polaron formation is known to limit ground-state mobilities in metal oxide photocatalysts. How...
The earliest ideas of the polaron recognized that the coupling of an electron to ionic vibrations wo...
Quasi-particles formed in lithium niobate after pulse exposure were investigated by transient absorp...
Photoinduced charge transport in lithium niobate for standard illumination, composition and temperat...
International audiencePhotoinduced charge transport in lithium niobate for standard illumination, co...
International audienceAdditional electrons injected into lithium peroxide become self-trapped to for...
Hole polarons and defect-bound exciton polarons in lithium niobate are investigated by means of dens...
The description of charge transport phenomena in polar oxide materials has up to now numerous unclea...
Abstract.- The temperature dependence of dynamic effective charges carried by Ti and Nb ions which a...
Self-organized electronically ordered phases are a recurring feature in correlated materials, result...
We suggest that the polaron-like trapping of electrons is possible in the high-k dielectrics alongsi...
Nonlinear optical techniques at visible frequencies have long been applied to condensed matter spect...
The ability to probe symmetry-breaking transitions on their natural time scales is one of the key ch...
We use time-resolved vibrational spectroscopy to probe the structural origins of the remarkably long...
In recent years, metal halide perovskites have generated tremendous interest for optoelectronic appl...
Small polaron formation is known to limit ground-state mobilities in metal oxide photocatalysts. How...
The earliest ideas of the polaron recognized that the coupling of an electron to ionic vibrations wo...
Quasi-particles formed in lithium niobate after pulse exposure were investigated by transient absorp...
Photoinduced charge transport in lithium niobate for standard illumination, composition and temperat...
International audiencePhotoinduced charge transport in lithium niobate for standard illumination, co...
International audienceAdditional electrons injected into lithium peroxide become self-trapped to for...
Hole polarons and defect-bound exciton polarons in lithium niobate are investigated by means of dens...
The description of charge transport phenomena in polar oxide materials has up to now numerous unclea...
Abstract.- The temperature dependence of dynamic effective charges carried by Ti and Nb ions which a...
Self-organized electronically ordered phases are a recurring feature in correlated materials, result...
We suggest that the polaron-like trapping of electrons is possible in the high-k dielectrics alongsi...
Nonlinear optical techniques at visible frequencies have long been applied to condensed matter spect...
The ability to probe symmetry-breaking transitions on their natural time scales is one of the key ch...
We use time-resolved vibrational spectroscopy to probe the structural origins of the remarkably long...
In recent years, metal halide perovskites have generated tremendous interest for optoelectronic appl...
Small polaron formation is known to limit ground-state mobilities in metal oxide photocatalysts. How...