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Profiling of silicide–silicon structures using a combination of the spreading resistance and point contact current–voltage methods

 

作者: J. M. Heddleson,   S. R. Weinzierl,   R. J. Hillard,   P. Rai‐Choudhury,   R. G. Mazur,  

 

期刊: Journal of Vacuum Science&Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena  (AIP Available online 1994)
卷期: Volume 12, issue 1  

页码: 317-321

 

ISSN:1071-1023

 

年代: 1994

 

DOI:10.1116/1.587160

 

出版商: American Vacuum Society

 

关键词: HETEROSTRUCTURES;SILICON;COBALT SILICIDES;DOPING PROFILES;ELECTRIC CONDUCTIVITY;IV CHARACTERISTIC;POINT CONTACTS;MEASURING METHODS;SOLID−SOLID INTERFACES;SPATIAL RESOLUTION;POTENTIAL BARRIER;Si;CoSi2

 

数据来源: AIP

 

摘要:

Silicides are increasingly being used as diffusion sources to form the ultra‐shallow, low resistance source‐drain junctions, which will be needed in the next generation of ultra‐large‐scale integration technology. The silicide thickness and impurity profile in the silicon must be determined accurately as they are critical parameters in determining the performance of the resulting devices. In order to analyze the spreading resistance data measured on silicide structures, the interface between the silicide and silicon must be precisely located. In this article, the use of point‐contact current–voltage (PCI–V) measurements for accurately determining the thickness of ultrathin cobalt silicide–monocrystalline silicon layers is demonstrated. This method is based on the potential barrier, which exists at the probe/silicon interface, but which does not exist at the probe–silicide interface. By monitoring this potential barrier, PCI–Vcan locate the silicide–silicon interface with a resolution of 10 Å.

 

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