Semiconductor memory device and method of fabricating the same
A semiconductor memory device includes a substrate including an active area defined by an element separation layer, the active area including a first portion and second portions defined on both sides of the first portion a bit line crossing the active area and extending in a first direction on the substrate, and a bit line contact disposed between the substrate and the bit line and directly connected to the first portion of the active area. The bit line contact includes an indent area recessed into the substrate and an upper area on the indent area, a width of the indent area decreases as a distance from the bit line increases, the indent area includes a slope forming a boundary with the substrate and having a straight line shape, and a starting point of the slope of the indent area is lower than an upper surface of the element separation layer.
1 . A semiconductor memory device, comprising:
a substrate comprising an active area defined by an element separation layer,
wherein the active area comprises a first portion and second portions defined on both sides of the first portion;
a bit line crossing the active area and extending in a first direction on the substrate; and
a bit line contact disposed between the substrate and the bit line and directly connected to the first portion of the active area,
wherein the bit line contact comprises an indent area recessed into the substrate and an upper area on the indent area,
a width of the indent area of the bit line contact decreases as a distance from the bit line increases,
the indent area of the bit line contact comprises a slope forming a boundary with the substrate and having a substantially straight line shape,
a starting point of the slope of the indent area is lower than an upper surface of the element separation layer, and
wherein the upper area of the bit line contact comprises a portion having a width that increases in a second direction different from the first direction as the distance from the bit line increases.
2 . The semiconductor memory device of claim 1 , further comprising:
a bit line spacer disposed on a sidewall of the bit line and a sidewall of the upper area of the bit line contact,
wherein the indent area of the bit line contact is disposed on a lower side of the bit line spacer.
3 . The semiconductor memory device of claim 1 , further comprising:
an impurity pile-up area in which impurities are piled up along the slope of the indent area.
4 . The semiconductor memory device of claim 3 , wherein the impurities comprise at least one of carbon, nitrogen, a halogen element, and phosphorus.
5 . The semiconductor memory device of claim 1 , further comprising:
node connection pads disposed on the substrate and connected to the second portions of the active area,
wherein an upper surface of the node connection pads is lower than a bottom surface of the bit line.
6 . The semiconductor memory device of claim 5 , further comprising:
a pad separation pattern disposed on the substrate and covering the upper surface of the node connection pads.
7 . The semiconductor memory device of claim 6 , wherein an upper surface of the pad separation pattern is on a same plane as the bottom surface of the bit line.
8 . The semiconductor memory device of claim 1 , further comprising:
information storage portions connected to the second portions of the active area,
wherein the information storage portions comprises a lower electrode, a capacitor dielectric layer disposed on the lower electrode, and an upper electrode disposed on the capacitor dielectric layer.
9 . A semiconductor memory device, comprising:
a substrate comprising an active area defined by an element separation layer;
a word line crossing the active area in a first direction,
wherein the word line is one of a plurality of word lines;
a bit line crossing the active area and extending in a second direction different from the first direction on the substrate; and
a bit line contact disposed between word lines among the plurality of word lines adjacent in the second direction and directly connected to the bit line and the active area,
wherein the bit line contact comprises an indent area recessed into the substrate and an upper area on the indent area,
a width of the indent area of the bit line contact decreases as a distance from the bit line increases,
the indent area of the bit line contact comprises a slope forming a boundary with the substrate and having a substantially straight line shape, and
a starting point of the slope of the indent area is lower than an upper surface of the element separation layer,
wherein the upper area of the bit line contact comprises a portion having a width that increases in the second direction as a distance from the bit line increases.
10 . The semiconductor memory device of claim 9 , wherein a width of the bit line contact in contact with the substrate in the second direction is a first width, and
a width of the indent area of the bit line contact in the second direction is a second width smaller than the first width.
11 . The semiconductor memory device of claim 9 , wherein a width of the bit line contact in contact with the substrate in the second direction is about equal to a width of the indent area of the bit line contact in the second direction.
12 . The semiconductor memory device of claim 9 , wherein the indent area of the bit line contact comprises a bottom surface connected to the slope, and
the bottom surface of the indent area has a substantially straight line shape.
13 . The semiconductor memory device of claim 9 , further comprising:
an impurity pile-up area in which impurities are piled up along the slope of the indent area.
14 . The semiconductor memory device of claim 9 , further comprising:
a cell gate capping pattern disposed on the word line and extending in the first direction along the word line,
wherein the slope of the indent area does not comprise a portion extending along the cell gate capping pattern.
15 . The semiconductor memory device of claim 9 , further comprising:
a plurality of bit line contact spacers disposed along sidewalls of the upper area of the bit line contact and spaced apart from each other in the second direction.