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      SCI SCIE SCOPUS

      Anisotropic electrical conductivity of surface-roughened semipolar $(11\bar{2}2)$ GaN films by photochemical etching

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      https://www.riss.kr/link?id=A107524140

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      다국어 초록 (Multilingual Abstract)

      <P>We studied the anisotropy of electrical conductivity in surface-roughened semipolar (11 (2) over bar2) GaN (s-GaN) films. Highly crystalline s-GaN films were obtained using asymmetric lateral epitaxy on oxide-patterned m-plane sapphire substr...

      <P>We studied the anisotropy of electrical conductivity in surface-roughened semipolar (11 (2) over bar2) GaN (s-GaN) films. Highly crystalline s-GaN films were obtained using asymmetric lateral epitaxy on oxide-patterned m-plane sapphire substrates. The in-plane structural anisotropy of the s-GaN films was confirmed by anisotropic peak broadening in X-ray rocking curves (XRC) with the in-beam orientations. The XRC full-width at half maximum (FWHM) values were measured to be 454 and 615 arcsec along the [(11 (2) over bar3)](GaN) and [1 (1) over bar 00](GaN) directions, respectively. The s-GaN surface was roughened using photo-chemical etching, and the electrical anisotropy was then investigated as a function of azimuth angles with the transmission line method. The Ohmic contact properties on the roughened s-GaN surface did not depend on the azimuth angle or annealing temperatures between 750 and 950 degrees C. The sheet resistances parallel to the [1 (1) over bar 00](GaN) direction on roughened s-GaN were found to be approximately half of the resistance parallel to the [11 (2) over bar3](GaN) direction, showing that anisotropic electrical conductivity is maintained for surface-roughened s-GaN due to charged carrier scattering induced by basal-plane stacking faults. (C) 2017 The Japan Society of Applied Physics</P>

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