EP0780907A2

Semiconductor device having shallow impurity region without short-circuit between gate electrode and source and drain regions and process of fabrication thereof

Abstract

Elevated source and drain regions (14a/14b) epitaxially grown on both sides of a gate structure (11i) cause a dopant impurity to form an extremely shallow p-n junctions (15a/15b) in a semiconductor substrate (10a) so as to prevent a field effect transistor from a short channel effect, and side wall spacers (11c/11d) include pad layers (11e/11f) of silicon nitride and spacer layers (11g/11h) of silicon oxide formed on the pad layers so that the elevated source and drain regions (14a/14b) form boundaries to the pad layers (11e/11f) without a facet and a silicon layer on the spacer layers (11g/11h).

EP0780907A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 19 December 2016, 9.8 years ago.

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12 claims: 2 independent, 10 dependent

  1. 1
    A semiconductor device having a field effect transistor formed on a semiconductor base layer (10a), said field effect transistor comprising:a gate insulating layer (11a) formed on a first area of said semiconductor base layer;a gate electrode (11b) formed on said gate insulating layer;side wall spacers (11c/11d) formed on second areas of said semiconductor base layer on both sides of said first area, and held in contact with side surfaces of said gate electrode;and source and drain regions (11j/11k) including conductive layers (14a/14b) formed of a semiconductor material epitaxially grown on third areas on opposite sides of said second areas to said first area, and impurity portions (10d/10e) of said semiconductor base layer respectively providing said third areas overlain by said conductive layers and opposed to each other through said first area, characterized in that said side wall spacers include pad layers (11e/11f) formed of a first insulating material and respectively having first bottom surfaces respectively held in contact with said second areas, first upper surfaces and first side surfaces, and spacing layers (11g/1h) formed of a second insulating material and respectively having second bottom surfaces respectively held in contact with said first upper surfaces of said pad layers, said conductive layers (14a/14b) having second side surfaces respectively held in contact with said first side surfaces, said semiconductor material having a small selectivity of epitaxial growth to said first insulating material and a large selectivity of epitaxial growth to said second insulating material so as to prevent boundaries between said conductive layers and said lad layers from a facet and said spacer layers from a deposition of said semiconductor material.
  2. 5
    A process of fabricating a semiconductor device having a field effect transistor, comprising the steps of:a) preparing a semiconductor base layer (10a);b) forming a gate insulating layer (11a) on a first area of said semiconductor base layer;c) forming a gate electrode (11b) on said gate insulating layer;d) forming side wall spacers (11c/11d) held in contact with side surfaces of said gate electrode, side surfaces of said gate insulating layer and second areas of said semiconductor base layer on both sides of said first area;e) epitaxially growing a semiconductor material on at least third areas of said semiconductor base layer on the opposite sides of said second areas to said first area for forming semiconductor layers (14a/14b) on said third areas;and f) introducing a dopant impurity through said semiconductor layers into a shallow surface portions (10d/10e) of said semiconductor base layer, characterized in that each of said side wall spacers (11c/11d) includes a pad layer (11e/11f) of a first insulating material held in contact with one of said second areas and a spacer layer (11g/11h) of a second insulating material formed on said pad layer, the epitaxial growth of said semiconductor material being carried out under conditions imparting a small selectivity between said semiconductor material and said first insulating material for forming said semiconductor layers (14a/14b) without a facet in boundaries to said pad layers (11e/11f) and a large selectivity between said semiconductor material and said second insulating material for preventing said spacer layers (11g/11h) from a deposition of said semiconductor material.