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  Quantum Nanostructures and Nanofabrication Group | Prof. Karl K. Berggren  
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Student unloads a wafer from electron-beam-lithography tool Student inspects a sample in an optical microscope Student works on a custom circuit board for an evolvable hardware project Students take atomic-force-micrograph of a photodetector in MIT's nanostructures laboratory
 
 
The frontier of electronic and photonic devices lies in nanoscience and nanotechnology research. At the nanoscale, materials and structures can be engineered to exhibit interesting new properties, some based on quantum mechanical effects. Our research focuses on pushing nanofabrication technology to the few-nanometer length-scale by using charged-particle beams combined with self-assembly. We use the technologies we develop to push the envelope of what is possible with photonic and electrical devices, focusing in particular on the nanowire-based superconductive photodetectors. Our research combines electrical engineering, physics, and materials science and helps push the boundaries of what is considered possible in nanoscale engineering.
 
 
       
 
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Current Research Projects
Nanolithography
Development of sub-10-nm-length-scale nanofabrication technology using charged-particle beams and nanoimprint...

Single-Photon Detectors
This effort focuses on developing superconductive nanowires as narrow as a few nm wide for use in single-photon detection...

Templated Self-Assembly
Lithography is currently being squeezed between two engineering realities: an extraordinary requirement on resolution for nanoscale manufacturing, and...

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