Semiconductor device and method of manufacturing the same
A semiconductor device includes a first stacked structure having first conductive layers and first insulating layers formed alternately with each other, first semiconductor patterns passing through the first stacked structure, a coupling pattern coupled to the first semiconductor patterns, and a slit passing through the first stacked structure and the coupling pattern.
1. A semiconductor device, comprising:
a first stacked structure including a first semiconductor pattern, a first conductive layer and a first insulating layer, the first conductive layer and the first insulating layer stacked along a sidewall of the first semiconductor pattern;
a second stacked structure including a second semiconductor pattern, a second conductive layer and a second insulating layer, the second conductive layer and the second insulating layer stacked along a sidewall of the second semiconductor pattern, the second conductive layer and the second insulating layer stacked in a direction in which the first conductive layer and the first insulating layer are stacked;
a third insulating layer including a coupling pattern, and interposed between the first stacked structure and the second stacked structure; and
a multilayer dielectric layer surrounding each of the first semiconductor pattern and the second semiconductor pattern,
wherein a portion of the multilayer dielectric layer surrounding the first semiconductor pattern extends to be in contact with the second semiconductor pattern,
wherein the third insulating layer contacts the first insulating layer and the second insulating layer,
wherein the coupling pattern couples the first semiconductor pattern to the second semiconductor pattern,
wherein the sidewall of the first semiconductor pattern includes a first outer portion and a second outer portion facing opposite directions, and
wherein the coupling pattern extends to cover a lower part of the first outer portion and does not extend to cover a lower part of the second outer portion.
2. The semiconductor device of claim 1 , further comprising a peripheral circuit located under the second stacked structure and the first stacked structure,
wherein the second stacked structure is located between the first stacked structure and the peripheral circuit.
3. The semiconductor device of claim 1 , wherein the first conductive layer and the second conductive layer include polysilicon.
4. The semiconductor device of claim 1 , wherein the multilayer dielectric layer includes:
a first data storage layer interposed between the first semiconductor pattern and the first stacked structure; and
a second data storage layer interposed between the second semiconductor pattern and the second stacked structure.
5. The semiconductor device of claim 4 ,
wherein the first data storage layer includes polysilicon interposed between the first semiconductor pattern and the first conductive layer, and
wherein the second data storage layer includes polysilicon interposed between the second semiconductor pattern and the second conductive layer.
6. The semiconductor device of claim 1 , wherein the multilayer dielectric layer includes:
a first multilayer dielectric layer corresponding to the portion of the multilayer dielectric layer; and
a second multilayer dielectric layer surrounding the sidewall of the second semiconductor pattern.
7. The semiconductor device of claim 6 , wherein the first multilayer dielectric layer is spaced apart from the second multilayer dielectric layer.
8. The semiconductor device of claim 1 , wherein the coupling pattern includes an uneven portion surrounding the first semiconductor pattern at different heights.
9. The semiconductor device of claim 1 , wherein the coupling pattern is formed in an opening defined in the third insulating layer.
10. The semiconductor device of claim 9 , wherein the coupling pattern includes a horizontal portion formed in the opening and a vertical portion protruding from the horizontal portion.
11. A semiconductor device, comprising:
a first stacked structure including a first semiconductor pattern, a first conductive layer and a first insulating layer, the first conductive layer and the first insulating layer stacked along a sidewall of the first semiconductor pattern;
a second stacked structure including a second semiconductor pattern, a second conductive layer and a second insulating layer, the second conductive layer and the second insulating layer stacked along a sidewall of the second semiconductor pattern, the second conductive layer and the second insulating layer stacked in a direction in which the first conductive layer and the first insulating layer are stacked; and
a third insulating layer including a coupling pattern, and interposed between the first stacked structure and the second stacked structure,
wherein the third insulating layer contacts the first insulating layer and the second insulating layer,
wherein the coupling pattern couples the first semiconductor pattern to the second semiconductor pattern,
wherein the coupling pattern includes a horizontal portion formed in an opening defined in the third insulating layer and a vertical portion protruding from the horizontal portion, and
wherein the vertical portion of the coupling pattern asymmetrically surrounds the sidewall of the first semiconductor pattern.