Nanoscale resolved infrared probing of crystal structure and of plasmon-phonon coupling.

Huber, A; Ocelic, N; Taubner, T; Hillenbrand, R · Nano Lett · 2006

basic_science · Level V

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Abstract

We show that slight variations of a crystal lattice cause significant spectral modifications of phonon-polariton resonant near-field interaction between polar semiconductor crystals and a scanning metal tip. Exploiting the effect for near-field imaging a SiC polytype boundary, we establish infrared mapping of crystal structure and crystal defects at 20 nm spatial resolution (lambda/500). By spectroscopic probing of doped SiC polytypes, we find that phonon-polariton resonant near-field interaction is also sensitive to electronic properties due to plasmon-phonon coupling in the crystals.

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