Full metadata
Title
Ab initio study of tantalum nitride and silver adatoms
Description
In 2022, integrated circuit interconnects will approach 10 nm and the diffusion barrier layers needed to ensure long lasting devices will be at 1 nm. This dimension means the interconnect will be dominated by the interface and it has been shown the interface is currently eroding device performance. The standard interconnect system has three layers - a Copper metal core, a Tantalum Adhesion layer and a Tantalum Nitride Diffusion Barrier Layer. An alternate interconnect schema is a Tantalum Nitride barrier layer and Silver as a metal. The adhesion layer is removed from the system along with changing to an alternate, low resistivity metal. First principles are used to assess the interface of the Silver and Tantalum Nitride. Several stoichiometric 1:1 Tantalum Nitride polymorphs are assessed and it is found that the Fe2P crystal structure is actually the most stable crystal structure which is at odds with the published phase diagram for ambient crystal structure. The surface stability of Fe2P-TaN is assessed and the absorption enthalpy of Silver adatoms is calculated. Finally, the thermodynamic stability of the TaN-Ag interconnect system is assessed.
Date Created
2012
Contributors
- Grumski, Michael (Author)
- Adams, James (Thesis advisor)
- Krause, Stephen (Committee member)
- Alford, Terry (Committee member)
- Arizona State University (Publisher)
Topical Subject
Resource Type
Extent
ix, 96 p. : col. ill
Language
eng
Copyright Statement
In Copyright
Primary Member of
Peer-reviewed
No
Open Access
No
Handle
https://hdl.handle.net/2286/R.I.14745
Statement of Responsibility
by Michael Grumski
Description Source
Retrieved on April 3, 2013
Level of coding
full
Note
Vita
thesis
Partial requirement for: Ph.D., Arizona State University, 2012
bibliography
Includes bibliographical references (p. 82-87)
Field of study: Materials science and engineering
System Created
- 2012-08-24 06:21:18
System Modified
- 2021-08-30 01:47:32
- 3 years 2 months ago
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