Non-planar transistor having germanium channel region and method of manufacturing the same
Provided is a non-planar transistor with a multi-gate structure that includes a germanium channel region, and a method of manufacturing the same. The non-planar transistor includes a silicon body and a channel region that covers exposed surfaces of the silicon body. The channel region is formed of a germanium layer and includes a first channel region and a second channel region. In order to form the germanium channel region, a mesa type active region is formed on the substrate, and a germanium layer is formed to cover two sidewalls and an upper surface of the active region.
1. A non-planar transistor comprising:
a silicon body formed on a substrate, the silicon body having two sidewalls and an upper surface;
a channel region formed of a Ge layer on the silicon body;
a gate formed on the channel region;
a gate dielectric layer interposed between the channel region and the gate; and
source/drain regions formed on both sides of the channel regions;
wherein the gate dielectric layer is formed of a high dielectric material selected from Ge x O y N z , Ge x Si y O z , and a combination thereof.
2. The non-planar transistor of claim 1 , wherein the channel region includes a first channel region and a second channel region, which respectively cover both sidewalls of the silicon body.
3. The non-planar transistor of claim 1 , wherein the Ge layer covers both sidewalls and the upper surface of the silicon body.
4. The non-planar transistor of claim 3 , wherein the channel region includes a first channel region and a second channel region, which cover both sidewalls of the silicon body and extend along surfaces perpendicular to a main surface of the substrate, respectively, and a third channel region, which covers the upper surface of the silicon body and extends along a surface perpendicular to the main surface of the substrate.
5. The non-planar transistor of claim 4 , wherein the gate includes a first gate formed on the first channel region, a second gate formed on the second channel region, and a third gate formed on the third channel region.
6. The non-planar transistor of claim 5 , wherein the first gate, the second gate, and the third gate are electrically interconnected.
7. The non-planar transistor of claim 1 , wherein the gate is formed of at least one of a conductive polysilicon layer, a metal layer, a metal nitride layer, and a metal silicide layer.
8. The non-planar transistor of claim 1 , wherein the gate is formed with a stacked structure including a conductive polysilicon layer and a first metal suicide layer thereon.
9. The non-planar transistor of claim 1 further comprising a second metal silicide layer formed on the source/drain regions.
10. The non-planar transistor of claim 1 , wherein the silicon body is formed on an insulating layer on the substrate.
11. The non-planar transistor of claim 10 , wherein the insulating layer is formed of a buried oxide film of an SOI substrate, and the silicon body is formed of an SOI layer.