Devices including gate spacer with gap or void and methods of forming the same
Devices and structures that include a gate spacer having a gap or void are described along with methods of forming such devices and structures. In accordance with some embodiments, a structure includes a substrate, a gate stack over the substrate, a contact over the substrate, and a spacer disposed laterally between the gate stack and the contact. The spacer includes a first dielectric sidewall portion and a second dielectric sidewall portion. A void is disposed between the first dielectric sidewall portion and the second dielectric sidewall portion.
1. A semiconductor device comprising:
a void located surrounded by a dielectric material, the dielectric material in physical contact with a semiconductor substrate;
a contact located on a first side of the dielectric material, the contact and the dielectric material having a straight interface; and
a gate dielectric located on a second side of the dielectric material.
2. The semiconductor device of claim 1 , wherein the dielectric material comprises silicon carbon oxynitride.
3. The semiconductor device of claim 1 , wherein the dielectric material comprises silicon oxycarbide.
4. The semiconductor device of claim 1 , wherein the dielectric material has a substantially same thickness along the straight interface.
5. The semiconductor device of claim 1 , wherein a first height of the void is within a range from about 0.3 times and about 0.7 times a second height of the contact and a capping material.
6. The semiconductor device of claim 5 , wherein the dielectric material is planar with the capping material.
7. The semiconductor device of claim 1 , wherein the dielectric material extends further away from the semiconductor substrate than the gate dielectric, and wherein the gate dielectric extends further away from the semiconductor substrate than the void.
8. A semiconductor device comprising:
a source/drain region adjacent to a lightly doped source/drain region;
a gate spacer in physical contact with both the source/drain region and the lightly doped source/drain region, the gate spacer comprising a dielectric material and a void within the dielectric material;
a contact in physical contact with the source/drain region and the gate spacer; and
a gate dielectric in physical contact with the gate spacer.
9. The semiconductor device of claim 8 , wherein the gate dielectric is aligned with the lightly doped source/drain region.
10. The semiconductor device of claim 8 , wherein the void is located directly over a portion of the source/drain region and a portion of the lightly doped source/drain region.
11. The semiconductor device of claim 8 , wherein a first height of the void is within a range from about 0.3 times and about 0.7 times a second height of the contact and a capping material.
12. The semiconductor device of claim 11 , wherein the dielectric material is planar with the capping material.
13. The semiconductor device of claim 8 , wherein the void encircles the gate dielectric.
14. The semiconductor device of claim 8 , wherein the dielectric material comprises silicon carbon oxynitride.
15. A semiconductor device comprising:
a dielectric material extending between a first dielectric cap and a second dielectric cap, the dielectric material also extending to a semiconductor substrate;
a contact extending from the second dielectric cap to a source/drain region within the semiconductor substrate;
a gate dielectric extending from the first dielectric cap towards the semiconductor substrate; and
a void located within the dielectric material between the contact and the gate dielectric.
16. The semiconductor device of claim 15 , wherein the dielectric material is planar with the first dielectric cap.
17. The semiconductor device of claim 16 , wherein the dielectric material is planar with the second dielectric cap.
18. The semiconductor device of claim 15 , wherein the void is located directly over a portion of the source/drain region.
19. The semiconductor device of claim 15 , wherein the void encircles the gate dielectric.
20. The semiconductor device of claim 15 , wherein the dielectric material extends further away from the semiconductor substrate than the gate dielectric, and wherein the gate dielectric extends further away from the semiconductor substrate than the void.