TY - JOUR
T1 - Growth of CuGaSe2 layers on closely lattice-matched GaAs substrates by migration-enhanced epitaxy
AU - Fujita, Miki
AU - Kawaharazuka, Atsushi
AU - Nishinaga, Jiro
AU - Ploog, Klaus H.
AU - Horikoshi, Yoshiji
PY - 2011/12
Y1 - 2011/12
N2 - CuGaSe2 single-crystal films are grown on the As-stabilized (2 × 4) surface of (001) GaAs by migration-enhanced epitaxy (MEE), where Cu+Ga and Se are alternately deposited. The growth process is monitored by refraction high-energy electron diffraction (RHEED) in the [110] azimuth. Under the Cu-enriched growth condition, a deformed 4-fold pattern is observed in both Cu+Ga and Se deposition periods. The deformed 4-fold pattern is found to be related to the segregation of Cu2Se on the CuGaSe2 surface as confirmed by the results of X-ray diffraction (XRD) measurement. By reducing the beam equivalent pressure of Cu (Cu-BEP), clear 4-fold patterns appear in both Cu+Ga and Se deposition periods instead of deformed 4-fold patterns. Further reduction of Cu-BEP results in clear 4- and 2-fold patterns for Cu+Ga and Se deposition periods. Under these growth conditions, Cu2Se- segregation-free CGS growth is achieved. Thus, the CuGaSe2 single-crystal layers without Cu2Sesegregation are successfully grown on GaAs(001) substrates by optimizing the Cu-BEP.
AB - CuGaSe2 single-crystal films are grown on the As-stabilized (2 × 4) surface of (001) GaAs by migration-enhanced epitaxy (MEE), where Cu+Ga and Se are alternately deposited. The growth process is monitored by refraction high-energy electron diffraction (RHEED) in the [110] azimuth. Under the Cu-enriched growth condition, a deformed 4-fold pattern is observed in both Cu+Ga and Se deposition periods. The deformed 4-fold pattern is found to be related to the segregation of Cu2Se on the CuGaSe2 surface as confirmed by the results of X-ray diffraction (XRD) measurement. By reducing the beam equivalent pressure of Cu (Cu-BEP), clear 4-fold patterns appear in both Cu+Ga and Se deposition periods instead of deformed 4-fold patterns. Further reduction of Cu-BEP results in clear 4- and 2-fold patterns for Cu+Ga and Se deposition periods. Under these growth conditions, Cu2Se- segregation-free CGS growth is achieved. Thus, the CuGaSe2 single-crystal layers without Cu2Sesegregation are successfully grown on GaAs(001) substrates by optimizing the Cu-BEP.
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U2 - 10.1143/JJAP.50.125502
DO - 10.1143/JJAP.50.125502
M3 - Article
AN - SCOPUS:82955227642
SN - 0021-4922
VL - 50
JO - Japanese Journal of Applied Physics, Part 1: Regular Papers & Short Notes
JF - Japanese Journal of Applied Physics, Part 1: Regular Papers & Short Notes
IS - 12
M1 - 125502
ER -