Transistor having a vertical channel
A resistance variable memory device including a vertical transistor includes an active pillar including a channel region, a source formed in one end of the channel region, and a lightly doped drain (LDD) region and a drain formed in the other end of the channel region, a first gate electrode formed to surround a periphery of the LDD region and having a first work function, and a second gate electrode formed to be connected to the first gate electrode and to surround the channel region and having a second work function that is higher than the first work function.
1. A semiconductor device, comprising:
an active pillar extending from a substrate in a first direction and including a source and a drain, wherein the source and the drain are arranged in the first direction;
a channel region formed in the active pillar and between the source and the drain;
a lightly doped drain (LDD) region formed in the active pillar and between the drain and the channel region;
a gate insulating layer formed over a sidewall of the active pillar in a second direction, wherein the second direction is perpendicular to the first direction;
a first gate electrode formed over the gate insulating layer in the second direction, surrounding the LDD region and the drain, and having a first work function; and
a second gate electrode formed over the gate insulating layer in the second direction, surrounding the channel region, and having a second work function,
wherein the second work function is higher than the first work function,
wherein a total thickness of the second gate electrode is larger than a total thickness of the first gate electrode,
wherein each of the total thickness of the second gate electrode and the total thickness of the first gate electrode is measured only in the second direction.
2. The semiconductor device of claim 1 , wherein the first gate electrode includes a transition metal layer, and
wherein the transition metal layer is selected from the group consisting of titanium (Ti), tantalum (Ta), cobalt (Co), and platinum (Pt).
3. The semiconductor device of claim 2 , wherein the second gate electrode includes a transition metal silicide layer, and
wherein the transition metal silicide layer is a silicide of the transition metal layer.
4. The semiconductor device of claim 1 , further comprising a resistive memory structure connected to the drain.
5. The semiconductor device of claim 4 , wherein the resistive memory structure includes:
a lower electrode formed over the drain in the first direction; and
a resistive memory layer formed over the lower electrode in the first direction.
6. The semiconductor device of claim 5 , wherein the resistive memory layer includes a PrCaMnO 3 (PCMO) layer including a material for a resistance random access memory (ReRAM), a chalcogenide layer including a material for a phase-change RAM (PCRAM), a magnetic layer including a material for a magnetoresistive RAM (MRAM), a magnetization reversal device layer including a material for a spin-transfer torque magentoresistive RAM (STTMRAM), or a polymer layer including a material for a polymer RAM (PoRAM).