Semiconductor devices including gate structures with gate spacers
A semiconductor device includes a plurality of semiconductor layers vertically separated from one another. The semiconductor device includes a gate structure that comprises a lower portion and an upper portion. The lower portion wraps around each of the plurality of semiconductor layers. The semiconductor device includes a gate spacer that extends along a sidewall of the upper portion of the gate structure and comprises a first layer and a second layer. The first layer is in contact with a first portion of the sidewall and the second layer is in contact with a second portion of the sidewall.
1. A semiconductor device, comprising:
a plurality of semiconductor layers vertically separated from one another;
a gate structure that comprises a lower portion and an upper portion, wherein the lower portion wraps around each of the plurality of semiconductor layers; and
a gate spacer that extends along a sidewall of the upper portion of the gate structure and comprises a first layer having a rectangular profile and a second layer having an L-shaped profile and in contact with the first layer;
wherein the first layer is in contact with a first portion of the sidewall and the second layer is in contact with a second portion of the sidewall; and
wherein the second layer comprises:
a vertical portion that is separated from the sidewall by the first layer; and
a horizontal portion that is in contact with the sidewall, wherein an entire top surface of the horizontal portion is in contact with an entire bottom surface of the first layer.
2. The semiconductor device of claim 1 , wherein the gate spacer further comprises a third layer that is in contact with a third portion of the sidewall.
3. The semiconductor device of claim 1 , wherein the first portion of the sidewall is vertically aligned with the second portion of the sidewall.
4. The semiconductor device of claim 1 , wherein the second portion of the sidewall is tilted away from the first portion of the sidewall toward the gate structure.
5. The semiconductor device of claim 4 , wherein the second portion of the sidewall has a curvature-based profile.
6. The semiconductor device of claim 1 , wherein the first layer of the gate spacer comprises a first side surface in contact with the first portion of the sidewall, and a second side surface in contact with a first portion of the second layer.
7. The semiconductor device of claim 1 , further comprising an etch stop layer disposed between the upper portion and the lower portion of the gate structure.
8. The semiconductor device of claim 7 , wherein the etch stop layer comprises a top surface in contact with a bottom surface of the second layer of the gate spacer.
9. The semiconductor device of claim 7 , wherein the etch stop layer comprises a side surface that extends from the sidewall of the upper portion of the gate structure, and has a profile selected from the group consisting of a curvature-based profile and an edge-based profile.
10. A semiconductor device, comprising:
a fin structure disposed over a substrate;
a gate structure that comprises a lower portion and an upper portion, wherein the lower portion straddles the fin structure; and
a gate spacer that extends along a sidewall of the upper portion of the gate structure and comprises a first layer and a second layer;
wherein the first layer has a rectangular profile and has a vertical surface that is in contact with and extends along the sidewall; and
wherein the second layer has an L-shaped profile and comprises:
a vertical portion that extends along the sidewall and is separated from the sidewall by the first layer; and
a horizontal portion that is in contact with the sidewall, wherein an entire top surface of the horizontal portion is in contact with an entire bottom surface of the first layer.
11. The semiconductor device of claim 10 , wherein the fin structure comprises one or more semiconductor layers vertically separated from one another, and the gate structure wraps around each of the one or more semiconductor layers.
12. The semiconductor device of claim 10 , wherein an interface between the sidewall and the first layer is vertically aligned with an interface between the sidewall and the second layer.
13. The semiconductor device of claim 10 , wherein an interface between the sidewall and the second layer is tilted away from an interface between the sidewall and the first layer toward the gate structure.
14. The semiconductor device of claim 13 , wherein the interface between the sidewall and the second layer has a curvature-based profile.
15. A semiconductor device, comprising:
a gate structure comprising a lower portion and an upper portion, wherein the lower portion wraps around a plurality of fins; and
a gate spacer that extends along a sidewall of the upper portion and comprises a first layer and a second layer that are in contact with each other;
wherein the first layer has a rectangular profile and extends along the sidewall; and
wherein the second layer has an L-shaped profile and comprises:
a vertical portion separated from the sidewall by the first layer; and
a horizontal portion having a top surface that is entirely in contact with an entire bottom surface of the first layer.
16. The semiconductor device of claim 15 , wherein the top surface of the horizontal portion separates the bottom surface of the first layer from the upper portion of the gate structure.
17. The semiconductor device of claim 15 , wherein an interface between the sidewall and the first layer is vertically aligned with an interface between the sidewall and the second layer.
18. The semiconductor device of claim 15 , further comprising an etch stop layer disposed between the upper portion and the lower portion of the gate structure.
19. The semiconductor device of claim 18 , wherein the etch stop layer comprises a top surface in contact with a bottom surface of the second layer of the gate spacer.
20. The semiconductor device of claim 18 , wherein the etch stop layer comprises a side surface that extends from the sidewall of the upper portion of the gate structure, and has a profile selected from the group consisting of a curvature-based profile and an edge-based profile.