

Professor
Vygantas Mizeikis
Associate Professor
Masahiro Hori
Assistant Professor
Hiromu Hamasaki
Recently, most of electronic and optical devices have been studied in terms of miniaturization for the purpose of increasing packing density, decreasing power consumption and diversity of device functions. Research on nanodevices is deeply related to quantum device physics, resulting in creation of new electronics. We are individually working on the fields of electronics, photonics, and thermoelectronic devices. More detailed research topics are indicated below.

- Control of single charges and single phonons using dopant atoms in silicon (Ono,Hori)
- Manipulation of charges and spins using quantum levels in silicon (Hori,Ono)
- Advanced laser lithography technique for creation of micro- and nano-photonic structures (Mizeikis)
- Creation of photonic crystals (PhC), frequency-selective surfaces (FSS), and diffractive optical elements (DOE) (Mizeikis)
- Achievement of high efficiency in thermopile infrared photodetector by Si nanostructures (Ikeda)
- Fabrication of thermopile with Si nanowires (Ikeda)
- Construction of measurement techniques for characterizing thermoelectric nanomaterials (Ikeda)
- Fabrication and study of single-electron devices using several dopant-atoms (Moraru)


