Phase change memory with gradual conductance change
View Patent ↗A phase change memory cell is provided that includes a phase change material-containing structure sandwiched between first and second electrodes. The phase change material-containing structure has an electrical conductance that changes gradually and thus may be used in analog or neuromorphic computing. The phase change material-containing structure includes two phase change material pillars that are composed of different phase change materials that exhibit an opposite change of electrical resistance (or inversely electrical conductance) during a SET operation and a RESET operation.
1. A memory structure comprising:
a first electrode located on a surface of a semiconductor substrate;
a phase change material-containing structure exhibiting a gradual conductance change located on the first electrode, wherein the phase change material-containing structure comprises a first phase change material pillar composed of a first phase change material that exhibits a first electrical conductance change during a SET operation and a RESET operation laterally adjacent to a second phase change material pillar composed of a second phase change material that exhibits a second electrical conductance change, which is opposite the first electrical conductance change, during the SET operation and the RESET operation, wherein a first sidewall of the first phase change material pillar is in direct physical contact with a sidewall of the second phase change material pillar; and
a second electrode located on a surface of the phase change material-containing structure.
2. The memory structure of claim 1 , wherein the first phase change material pillar and the second phase change material pillar are in parallel with each other.
3. The memory structure of claim 1 , further comprising an interlevel dielectric material layer laterally surrounding the phase change material-containing structure and located on the semiconductor substrate.
4. The memory structure of claim 3 , wherein the interlevel dielectric material layer is in direct physical contact with a second sidewall of the first phase change material pillar, wherein the second sidewall is opposite the first sidewall of the first phase change material pillar.
5. The memory structure of claim 1 , wherein the first phase change material is a regular phase change material, and the second phase change material is an inverse phase change material.
6. The memory structure of claim 5 , wherein the first phase change material comprises GeSbTe alloy (GST), a SbTe alloy, or an InSe alloy, and the second phase change material comprises Cr 2 Ge 2 Te 6 (CrGeT).
7. The memory structure of claim 1 , wherein the first phase change material is an inverse phase change material, and the second phase change material is a regular phase change material.
8. The memory structure of claim 7 , wherein the first phase change material comprises Cr 2 Ge 2 Te 6 (CrGeT) and the second phase change material comprises GeSbTe alloy (GST), a SbTe alloy, or an InSe alloy.
9. The memory structure of claim 1 , wherein the first and second phase change material pillars are concentric and have a same height.
10. A memory structure comprising:
a first electrode located on a surface of a semiconductor substrate;
a phase change material-containing structure exhibiting a gradual conductance change located on the first electrode, wherein the phase change material-containing structure comprises a first phase change material pillar composed of a first phase change material that exhibits a first electrical conductance change during a SET operation and a RESET operation laterally adjacent to a second phase change material pillar composed of a second phase change material that exhibits a second electrical conductance change, which is opposite the first electrical conductance change, during the SET operation and the RESET operation;
a second electrode located on a surface of the phase change material-containing structure; and
an interlevel dielectric material layer laterally surrounding the phase change material-containing structure and located on the semiconductor substrate, wherein the interlevel dielectric material layer is spaced apart from the first phase change material pillar by a dielectric pillar.
11. The memory structure of claim 10 , wherein the first phase change material pillar is spaced apart from the second phase change material pillar by another dielectric pillar.