Horizontally stacked nanosheet gate all around device structure
A semiconductor structure includes a substrate disposed in a horizontal plane, a gate metal on the substrate, a first spacer and a second spacer on the substrate with the gate metal between the first spacer and the second spacer, and a plurality of horizontally stacked nanosheets extending between the first spacer and the second spacer, with the gate metal encapsulating the plurality of horizontally stacked nanosheets between the first spacer and the second spacer.
1 . A semiconductor structure comprising:
a substrate disposed in a horizontal plane;
a gate metal over the substrate; and
a plurality of horizontally stacked nanosheets encapsulated by the gate metal,
wherein the plurality of horizontally stacked nanosheets have a major channel plane different than that of the substrate.
2 . The semiconductor structure of claim 1 , further comprising:
a first spacer and a second spacer over the substrate with the gate metal between the first spacer and the second spacer and the plurality of horizontally stacked nanosheets extending between the first spacer and the second spacer.
3 . The semiconductor structure of claim 2 , further comprising:
a source region on a sidewall of the first spacer opposite the gate metal; and
a drain region on a second of the second spacer opposite the gate metal,
wherein the plurality of horizontally stacked nanosheets extend through the first spacer and the second spacer and contact the source region and the drain region.
4 . The semiconductor structure of claim 1 , further comprising a local shallow trench isolation layer directly on the substrate.
5 . The semiconductor structure of claim 4 , wherein the substrate includes a portion extending through the local shallow trench isolation layer and contacting the gate metal below at least one of nanosheet of the plurality of horizontally stacked nanosheets.
6 . A semiconductor structure comprising:
a substrate disposed in a horizontal plane;
a gate metal on the substrate;
a first spacer and a second spacer on the substrate with the gate metal between the first spacer and the second spacer; and
a plurality of vertically oriented, horizontally stacked, nanosheets extending between the first spacer and the second spacer, with the gate metal encapsulating the plurality of vertically oriented, horizontally stacked, nanosheets between the first spacer and the second spacer.
7 . The semiconductor structure of claim 6 , wherein a width of each of the plurality of vertically oriented, horizontally stacked, nanosheets is less than 10 nanometers.
8 . The semiconductor structure of claim 6 , wherein a space between at least two adjacent ones of the plurality of vertically oriented, horizontally stacked, nanosheets is less than 10 nanometers.
9 . The semiconductor structure of claim 6 , wherein each of the plurality of vertically oriented, horizontally stacked, nanosheets extends perpendicular to the substrate.
10 . The semiconductor structure of claim 6 , wherein each of the plurality of vertically oriented, horizontally stacked, nanosheets extends is a plane different than the horizontal plane of the substrate.
11 . The semiconductor structure of claim 6 , wherein the plurality of vertically oriented, horizontally stacked, nanosheets have a major channel plane different than that of the substrate.
12 . The semiconductor structure of claim 6 , wherein the substrate has a Si(001) channel plane as major channel region and the plurality of horizontally stacked nanosheets have a Si(110) channel plane as major channel region.
13 . The semiconductor structure of claim 6 , wherein the substrate has a Si(110) channel plane as major channel region and the plurality of vertically oriented, horizontally stacked, nanosheets have a Si(001) channel plane as major channel region.
14 . The semiconductor structure of claim 6 , further comprising a local shallow trench isolation (STI) layer on the substrate and below the first spacer and the second spacer.
15 . The semiconductor structure of claim 6 , wherein the gate metal is below each of the plurality of vertically oriented, horizontally stacked, nanosheets.
16 . The semiconductor structure of claim 15 , further comprising a first inner spacer formed around the gate metal under a least one of the plurality of horizontally stacked nanosheets.
17 . The semiconductor structure of claim 6 , further comprising gate sidewall spacers formed on the first spacer and the second spacer.
18 . The semiconductor structure of claim 6 , further comprising:
a source region disposed on the first spacer opposite the gate metal; and
a drain region disposed on the second spacer opposite the gate metal,
wherein portion of the plurality of vertically oriented, horizontally stacked, nanosheets extend through the first spacer and the second spacer and contact the source region and the drain region.