Reduction of gate-drain capacitance
A semiconductor device according to the present disclosure includes a bottom dielectric feature on a substrate, a plurality of channel members directly over the bottom dielectric feature, a gate structure wrapping around each of the plurality of channel members, two first epitaxial features sandwiching the bottom dielectric feature along a first direction, and two second epitaxial features sandwiching the plurality of channel members along the first direction.
1. A semiconductor device, comprising:
a bottom dielectric feature disposed directly on a substrate;
a plurality of channel members directly over the bottom dielectric feature;
a gate structure wrapping around each of the plurality of channel members and disposed directly over the bottom dielectric feature;
two first epitaxial features sandwiching the bottom dielectric feature along a first direction; and
two second epitaxial features sandwiching the plurality of channel members along the first direction,
wherein a composition of the two first epitaxial features is different from a composition of the two second epitaxial features.
2. The semiconductor device of claim 1 ,
wherein the bottom dielectric feature comprises a seam,
wherein a bottommost surface of the gate structure is in direct contact with a top surface of the bottom dielectric feature.
3. The semiconductor device of claim 1 , wherein the bottom dielectric feature comprises silicon oxide, silicon nitride, silicon oxycarbide, or silicon oxycarbonitride.
4. The semiconductor device of claim 1 , wherein the bottom dielectric feature consists essentially of silicon germanium oxide.
5. The semiconductor device of claim 1 , wherein the two first epitaxial features comprise silicon, silicon germanium, or silicon arsenide.
6. The semiconductor device of claim 1 , wherein the two second epitaxial features comprise phosphorus doped silicon or boron doped silicon germanium.
7. The semiconductor device of claim 1 ,
wherein the two first epitaxial features are spaced apart from the bottom dielectric feature by a liner, and
wherein a composition of the liner is different from a composition of the bottom dielectric feature.
8. The semiconductor device of claim 1 ,
wherein the bottom dielectric feature comprises a thickness measured between the substrate and a bottom surface of the gate structure, and
Wherein the thickness is between about 8 nm and about 10 nm.
9. A semiconductor device, comprising:
a bottom dielectric feature disposed directly on a substrate;
a plurality of channel members directly over the bottom dielectric feature; and
a gate structure wrapping around each of the plurality of channel members and disposed directly over the bottom dielectric feature,
wherein the bottom dielectric feature is disposed between the substrate and a bottom surface of the gate structure along a vertical direction, and
wherein the bottom dielectric feature comprises a seam.
10. The semiconductor device of claim 9 , wherein the bottom dielectric feature comprises silicon oxide, silicon nitride, silicon oxycarbide, or silicon oxycarbonitride.
11. The semiconductor device of claim 9 , wherein the bottom dielectric feature consists essentially of silicon germanium oxide.
12. The semiconductor device of claim 9 , further comprising:
two first epitaxial features sandwiching the bottom dielectric feature along a first direction, the two first epitaxial features being disposed directly on the substrate; and
two second epitaxial features sandwiching the plurality of channel members along the first direction.
13. The semiconductor device of claim 12 ,
wherein the two first epitaxial features comprise silicon, silicon germanium, or silicon arsenide, and
wherein the two second epitaxial features comprise phosphorus doped silicon or boron doped silicon germanium.
14. A semiconductor structure, comprising:
a bottom dielectric feature disposed directly on a substrate;
a plurality of nanostructures, each of the plurality of nanostructures being disposed directly over the bottom dielectric feature;
a gate structure wrapping around each of the plurality of nanostructures and disposed directly over the bottom dielectric feature;
a top epitaxial feature in contact with sidewalls of the plurality of nanostructures; and
a bottom epitaxial feature adjacent a sidewall of the bottom dielectric feature, disposed below the top epitaxial feature, and in contact with the substrate,
wherein the bottom dielectric feature is in contact with and sandwiched between a bottom surface of the gate structure and a top surface of the substrate.
15. The semiconductor structure of claim 14 , wherein the bottom epitaxial feature is spaced apart from the bottom dielectric feature by a liner.
16. The semiconductor structure of claim 15 ,
wherein the top epitaxial feature comprises phosphorus-doped silicon,
wherein the bottom epitaxial feature comprises undoped silicon or arsenic-doped silicon.
17. The semiconductor structure of claim 15 ,
wherein the bottom dielectric feature consists essentially of silicon germanium oxide,
wherein the liner comprises silicon oxide or silicon oxycarbide.
18. The semiconductor structure of claim 15 ,
wherein the bottom dielectric feature comprises silicon oxide, silicon nitride, silicon oxycarbide, or silicon oxycarbonitride,
wherein the liner comprises silicon oxide or silicon oxycarbide.
19. The semiconductor structure of claim 18 , wherein the bottom dielectric feature comprises a sheet-like seam.
20. The semiconductor structure of claim 14 , further comprising:
a plurality of inner spacer features interleaving the plurality of nanostructures,
wherein the plurality of inner spacer features are in contact with the top epitaxial feature.