Resistance switching (RS) devices have potential to offer computing and memory function. A new computer unit is built of RS array, where processing and storing of information occur on same devices. Resistance states stored in devices located in arbitrary positions of RS array can be performed various nonvolatile logic operations. Logic functions can be reconfigured by altering trigger signals.NSFC, Beijing Municipal Science, and Technology Plan Projects [61421005, 61334007]SCI(E)PubMedARTICLEkangjf@pku.edu.cn; xyliu@ime.pku.edu.cn449758-+2
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
International audienceEmerging non-volatile memoires (e.g. STT-MRAM, OxRRAM and CBRAM) based on resi...
On the road towards higher memory density and computer performance, a significant improvement in ene...
The realization of logic operations within passive crossbar memory arrays is a promising approach to...
Resistive random access memory(Re RAM)is a leading candidate for next-generation nonvolatile memorie...
Redox-based resistive switching devices (ReRAM) are an emerging class of nonvolatile storage element...
Developing energy-efficient parallel information processing systems beyond von Neumann architecture ...
Conventional CMOS-technology defined by optical lithography will reach its physical limits within th...
Beyond CMOS, new technologies are emerging to extend electronic systems with features unavailable to...
Issues in the circuitry, integration, and material properties of the two-dimensional (2D) and three-...
Memristor based logic and memories are increasingly be- coming one of the fundamental building block...
Cross-talk in memories using resistive switches in a cross-bar geometry can be prevented by integrat...
Redox-based resistive switches are an emerging class of non-volatile memory and logic devices. Espec...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
International audienceEmerging non-volatile memoires (e.g. STT-MRAM, OxRRAM and CBRAM) based on resi...
On the road towards higher memory density and computer performance, a significant improvement in ene...
The realization of logic operations within passive crossbar memory arrays is a promising approach to...
Resistive random access memory(Re RAM)is a leading candidate for next-generation nonvolatile memorie...
Redox-based resistive switching devices (ReRAM) are an emerging class of nonvolatile storage element...
Developing energy-efficient parallel information processing systems beyond von Neumann architecture ...
Conventional CMOS-technology defined by optical lithography will reach its physical limits within th...
Beyond CMOS, new technologies are emerging to extend electronic systems with features unavailable to...
Issues in the circuitry, integration, and material properties of the two-dimensional (2D) and three-...
Memristor based logic and memories are increasingly be- coming one of the fundamental building block...
Cross-talk in memories using resistive switches in a cross-bar geometry can be prevented by integrat...
Redox-based resistive switches are an emerging class of non-volatile memory and logic devices. Espec...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
International audienceEmerging non-volatile memoires (e.g. STT-MRAM, OxRRAM and CBRAM) based on resi...