Skip to content
Research Article Open access CC BY 3.0

Evidence for Negative Electron Affinity in Laser Irradiated ZnTe Thin Films

Sachin D. Kshirsagar, M. Ghanashyam Krishna

Physical Science International Journal · pp. 657–668 · Published 5 Feb 2014

10.9734/PSIJ/2014/5907

Abstract

Local transport properties of laser irradiated ZnTe thin films are reported.  By rastering the laser beam (of 532 nm wavelength) appropriately, ZnTe decomposes into n-type ZnTe and Te and a grating like structure with micro-stripes of ZnTe separated by grooves of Te is obtained. Conductive atomic force microscopy studies and local I-V measurements made on the stripes and grooves show that the film properties are mainly determined by chemical composition, rather than by the topography of the film. When the tip is positively biased, the current images closely match the topography images.  In contrast, when the tip is negatively biased the current and topography images are very different and a large negative current was also observed in the grooves. This is attributed to the variation in charge separation (interface capacitance) caused by the rough surface. It is shown that Te forms ohmic contact with Au tip, but the junction exhibits Schottky diode behavior under low biasing voltages.  The large current at both high positive and negative tip biasing may arise due to semi-metallic properties of Te. The I-V characteristics measurement reveals formation of Schottky barrier between ZnTe-Au junctions with a very low value (32.4 – 78.3 meV) of barrier which indicates the presence of negative electron affinity.  

ZnTe films conducting atomic force microscopy metal/semiconductor interface Schottky Barrier

Cited by 0

No indexed citations yet.

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

0

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.