DocumentCode
3552426
Title
High barrier height Schottky diodes on n-InP by low temperature deposition
Author
Shi, Z.Q. ; Wallace, R.L. ; Anderson, W.A.
Author_Institution
Dept. of Electr. & Comput. Eng., State Univ. of New York at Buffalo, Amherst, NY, USA
fYear
1991
fDate
8-11 Apr 1991
Firstpage
539
Lastpage
542
Abstract
The formation of ultra-high barrier height (φB=0.96 eV) Schottky contacts to n-InP, without an intentionally grown interfacial oxide, using metal deposition on a substrate cooled to as low as 77 K is discussed. Values of φB=0.46-0.52 eV for diodes deposited at room temperature (RT=300 K) agree and give an ideality factor near unity. For diodes deposited at a low temperature (LT) of 77 K, the leakage current density (J 0) is reduced by more than 6-7 orders of magnitude with respect to the RT diodes. The φB for the LT diodes is increased from 0.48 to 0.96 eV for Pd metal and from 0.51 to 0.85 eV for Au metal, respectively. The conduction mechanisms for the LT and RT diodes are found to be controlled by thermionic-field emission (TFE) and thermionic emission (TE), respectively. It is shown that an alteration of the metal-induced interface states, inhibition of surface segregation of the released In and P atoms, and very uniform metal coverage may be responsible for the distinct differences between the RT and LT diodes
Keywords
III-V semiconductors; Schottky effect; Schottky-barrier diodes; gold; indium compounds; interface electron states; leakage currents; palladium; semiconductor-metal boundaries; work function; 77 to 573 K; I-V characteristics; InP; InP-Au; InP-Pd; Schottky contacts; Schottky diodes; conduction mechanisms; ideality factor; leakage current density; low temperature deposition; metal-induced interface states; substrate temperature; surface segregation inhibition; thermionic emission; thermionic-field emission; ultra-high barrier height; uniform metal coverage; work function; Gold; Indium phosphide; Leakage current; Schottky barriers; Schottky diodes; Semiconductor diodes; Substrates; Surface cleaning; Temperature; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Indium Phosphide and Related Materials, 1991., Third International Conference.
Conference_Location
Cardiff
Print_ISBN
0-87942-626-8
Type
conf
DOI
10.1109/ICIPRM.1991.147433
Filename
147433
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