Field effect transistor with shallow trench isolation features within source/drain regions
The present disclosure relates to semiconductor structures and, more particularly, to field effect transistors and methods of manufacture. The structure includes: at least one gate structure comprising source/drain regions; and at least one isolation structure perpendicular to the at least one gate structure and within the source/drain regions.
1. A structure comprising:
at least one gate structure;
a well structure below the at least one gate structure in an underlying substrate material;
source/drain regions in the well structure and on opposing sides to the at least one gate structure;
at least one shallow trench isolation structure perpendicular to the at least one gate structure, within the source/drain regions and extending below the source/drain regions and the well structure into the underlying substrate material; and
a polysilicon layer under the source/drain regions, the polysilicon layer comprising a T-shape which has a leg contacting the at least one shallow trench isolation structure.
2. The structure of claim 1 , wherein the at least one shallow trench isolation structure extends into deeper than the source/drain regions in the substrate material.
3. The structure of claim 1 , further comprising silicided semiconductor material in the source/drain regions adjacent to the at least one shallow trench isolation structure.
4. The structure of claim 3 , further comprising an interconnect structure landing on both the at least one shallow trench isolation structure and the silicided semiconductor material in the source/drain regions.
5. The structure of claim 3 , wherein the at least one gate structure comprises silicided polysilicon material.
6. The structure of claim 3 , wherein the at least one gate structure comprises metal material.
7. The structure of claim 1 , further comprising a polysilicon layer within a semiconductor substrate, below the at least one shallow trench isolation structure and the source/drain regions.
8. The structure of claim 7 , wherein the source/drain regions extend into the polysilicon layer.
9. The structure of claim 1 , wherein the at least one shallow trench isolation structure is between plural gate structures, and further comprising at least one shallow trench isolation structure adjacent to the plural gate structures.
10. The structure of claim 9 , wherein the at least one shallow trench isolation structure is shallower than the at least one shallow trench isolation structure.
11. The structure of claim 1 , wherein the source/drain regions are formed in the well structure of a bulk semiconductor substrate.
12. The structure of claim 1 , wherein the at least one gate structure comprises sidewall spacers and the at least one shallow trench isolation structure is remotely position from the sidewall spacers.
13. The structure of claim 7 , wherein the high resistivity layer comprises a resistivity greater than a resistivity of the semiconductor substrate.
14. The structure of claim 1 , further comprising a contact to the source/drain regions which is aligned over the at least one shallow trench isolation structure between adjacent gate structures of the at least one gate structure.
15. The structure of claim 14 , further comprising an undoped semiconductor material between the well structure and the polysilicon layer under the source/drain regions and silicide regions on both sides of the contact, directly contacting the source/drain regions.
16. A structure comprising:
a polysilicon layer sandwiched within a semiconductor substrate;
a plurality of gate structures;
a dopant well within the semiconductor substrate, below the plurality of gate structures;
source/drain regions in the dopant well in the semiconductor substrate, adjacent to each of the plurality of gate structures;
a plurality of shallow trench isolation structures extending below the dopant well within the semiconductor substrate, deeper than the source/drain regions and between the plurality of gate structures;
silicide on the semiconductor substrate in the source/drain regions and adjacent to the trench isolation structures; and
an interconnect structure that lands on the silicide and is aligned over at least two of the plurality of shallow trench isolation structures.
17. The structure of claim 16 , wherein the at least one shallow trench isolation structure is perpendicular to the plurality of gate structures.
18. The structure of claim 16 , wherein the semiconductor substrate is a high resistivity semiconductor substrate of >1,000 ohm-cm.
19. The structure of claim 16 , further comprising an isolation structure surrounding outer gate structures of the plurality of gate structures, the isolation structure being deeper than the at least one shallow trench isolation structure.
20. A method comprising:
forming at least one gate structure;
forming a well structure below the at least one gate structure;
forming source/drain regions in the well structure and on opposing sides to the at least one gate structure; and
forming at least shallow trench one isolation structure perpendicular to the at least one gate structure, within the source/drain regions and extending below the source/drain regions and the well into an underlying substrate material; and
forming a polysilicon layer under the source/drain regions, the polysilicon layer comprising a T-shape which has a leg contacting the at least one shallow trench isolation structure.