The primary metric for gauging progress in the various semiconductor integrated circuit technologies is the spacing, or pitch, between the most closely spaced wires within a dynamic random access memory (DRAM) circuit(1). Modern DRAM circuits have 140 nm pitch wires and a memory cell size of 0.0408 mu m(2). Improving integrated circuit technology will require that these dimensions decrease over time. However, at present a large fraction of the patterning and materials requirements that we expect to need for the construction of new integrated circuit technologies in 2013 have 'no known solution'(1). Promising ingredients for advances in integrated circuit technology are nanowires(2), molecular electronics(3) and defect-tolerant architectures...
The development of high-speed, nonvolatile memory devices with low power consumption remains a signi...
Miniaturization of integrated circuits is happening at a rapid pace since the last two decades. Phys...
A concept for molecular electronics exploiting carbon nanotubes as both molecular device elements an...
The primary metric for gauging progress in the various semiconductor integrated circuit technologies...
Moore's Law, the 1965 prediction by Intel co-founder Gordon Moore that manufacturers would double th...
Technologies are now emerging to construct molecular-scale electronic wires and switches using botto...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
Electronic devices containing molecules as either passive or active (switching) components present t...
New electronics technologies are emerging which may carry us beyond the limits of lithographic proce...
We describe our research into building integrated molecular electronics circuitry for a diverse set ...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
We describe our research into building integrated molecular electronics circuitry for a diverse set ...
Integrating molecular memory devices into large scale arrays is a key requirement for translating th...
Nanoelectronic molecular and magnetic tunnel junction (MTJ) MRAM crossbar memory systems have the po...
As the dominating CMOS technology is fast approaching a “brick wall, ” new opportunities arise for c...
The development of high-speed, nonvolatile memory devices with low power consumption remains a signi...
Miniaturization of integrated circuits is happening at a rapid pace since the last two decades. Phys...
A concept for molecular electronics exploiting carbon nanotubes as both molecular device elements an...
The primary metric for gauging progress in the various semiconductor integrated circuit technologies...
Moore's Law, the 1965 prediction by Intel co-founder Gordon Moore that manufacturers would double th...
Technologies are now emerging to construct molecular-scale electronic wires and switches using botto...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
Electronic devices containing molecules as either passive or active (switching) components present t...
New electronics technologies are emerging which may carry us beyond the limits of lithographic proce...
We describe our research into building integrated molecular electronics circuitry for a diverse set ...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
We describe our research into building integrated molecular electronics circuitry for a diverse set ...
Integrating molecular memory devices into large scale arrays is a key requirement for translating th...
Nanoelectronic molecular and magnetic tunnel junction (MTJ) MRAM crossbar memory systems have the po...
As the dominating CMOS technology is fast approaching a “brick wall, ” new opportunities arise for c...
The development of high-speed, nonvolatile memory devices with low power consumption remains a signi...
Miniaturization of integrated circuits is happening at a rapid pace since the last two decades. Phys...
A concept for molecular electronics exploiting carbon nanotubes as both molecular device elements an...