DocumentCode
621022
Title
Carrier-transport, optical and structural properties of large area ELOG InP on Si using conventional optical lithography
Author
Kataria, Himanshu ; Metaferia, W.T. ; Nagarajan, Mahesh ; Junesand, Carl ; Sun, Yue ; Lourdudoss, Sebastian
Author_Institution
Lab. of Semicond. Mater., KTHRoyal Inst. of Technol., Kista, Sweden
fYear
2013
fDate
19-23 May 2013
Firstpage
1
Lastpage
2
Abstract
We present the carrier-transport, optical and structural properties of InP deposited on Si by Epitaxial Lateral Overgrowth (ELOG) in a Low Pressure-Hydride Vapor phase epitaxy (LP-HVPE). Hall measurements, micro photoluminescence (μ-PL) and X-ray diffraction (XRD) were used to study the above-mentioned respective properties at room temperature. It is the first time that electrical properties of ELOG InP on Si are studied by Hall measurements. Prior to ELOG, etching of patterned silicon dioxide (SiO2) mask leading to a high aspect ratio, i. e. mask thickness to opening width >2 was optimized to eliminate defect propagation even above the opening. Dense high aspect ratio structures were fabricated in SiO2 to obtain ELOG InP on Si, coalesced over large area, making it feasible to perform Hall measurements. We examine this method and study Hall mobility, strain and optical quality of large area ELOG InP on Si.
Keywords
Hall mobility; III-V semiconductors; X-ray diffraction; indium compounds; micro-optics; photoluminescence; semiconductor epitaxial layers; semiconductor growth; vapour phase epitaxial growth; Hall measurements; Hall mobility; InP; Si; X-ray diffraction; carrier-transport properties; coalescence; conventional optical lithography; defect propagation; epitaxial lateral overgrowth; low pressure-hydride vapor phase epitaxy; microphotoluminescence; optical properties; optical quality; strain; structural properties; Indium phosphide; Optical device fabrication; Silicon; Strain; Substrates; Temperature measurement; X-ray scattering; ELOG; HVPE; Hall; InP;
fLanguage
English
Publisher
ieee
Conference_Titel
Indium Phosphide and Related Materials (IPRM), 2013 International Conference on
Conference_Location
Kobe
ISSN
1092-8669
Print_ISBN
978-1-4673-6130-9
Electronic_ISBN
1092-8669
Type
conf
DOI
10.1109/ICIPRM.2013.6562592
Filename
6562592
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