JOURNAL ARTICLE

Pulsed laser deposition of niobium nitride thin films

Ashraf H. FarhaY. UfuktepeGanapati Rao MyneniHani E. Elsayed-Ali

Year: 2015 Journal:   AIP conference proceedings Vol: 1687 Pages: 020003-020003   Publisher: American Institute of Physics

Abstract

Niobium nitride (NbNx) films were grown on Nb and Si(100) substrates using pulsed laser deposition. NbNx films were deposited on Nb substrates using PLD with a Q-switched Nd:YAG laser (λ = 1064 nm, ∼40 ns pulse width, and 10 Hz repetition rate) at different laser fluences, nitrogen background pressures and deposition substrate temperatures. When all the fabrication parameters are fixed, except for the laser fluence, the surface roughness, nitrogen content, and grain size increase with increasing laser fluence. Increasing nitrogen background pressure leads to a change in the phase structure of the NbNx films from mixed β-Nb2N and cubic δ-NbN phases to single hexagonal β-Nb2N. The substrate temperature affects the preferred orientation of the crystal structure. The structural and electronic, properties of NbNx deposited on Si(100) were also investigated. The NbNx films exhibited a cubic δ-NbN with a strong (111) orientation. A correlation between surface morphology, electronic, and superconducting properties was found. The observations establish guidelines for adjusting the deposition parameters to achieve the desired NbNx film morphology and phase.

Keywords:
Materials science Pulsed laser deposition Fluence Niobium Thin film Substrate (aquarium) Niobium nitride Grain size Laser Nitride Surface roughness Deposition (geology) Optoelectronics Analytical Chemistry (journal) Optics Composite material Nanotechnology Metallurgy Layer (electronics)

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Citation History

Topics

Metal and Thin Film Mechanics
Physical Sciences →  Engineering →  Mechanics of Materials
GaN-based semiconductor devices and materials
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics
Semiconductor materials and devices
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
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