Low-temperature vertical carrier transport in layered structures comprised of Si nanocrystals separated in the growth direction by angstrom-thick SiO2 layers exhibits entirely unexpected, well-defined resonances in conductivity. An unusual alternating current (ac) conductivity dependence on frequency and low magnetic field, negative differential conductivity, reproducible N-shaped switching and self-oscillations were observed consistently. The modeled conductivity mechanism is associated with resonant hole tunneling via quantized valence band states of Si nanocrystals. Tight-binding calculations of the quantum confinement effect for different Si nanocrystal sizes and shapes strongly support the tunneling model
We studied resonant electron tunneling through individual CdSe and CdS nanocrystals in two types of ...
[[abstract]]Frequency-dependent capacitance-voltage spectroscopy was applied to investigate the carr...
We suggest a new theory for the description of electrical conductivity of semiconductor quantum nano...
Low-temperature vertical carrier transport in layered structures comprised of $\chem{Si}$ nanocrysta...
We have fabricated organically capped stable luminescent silicon nanocrystals with narrow size distr...
A nanocrystal Si (nc-Si) distributed in a narrow layer in the gate oxide close to the gate is synthe...
Colloidal semiconductor nanocrystals (NCs) are quantum-size-effect tunable and processible from orga...
Measurements of the temperature and carrier-density dependence of the strongly localized conductance...
The transport characteristics of both electrons and holes through narrow constricted “wall-like” Sil...
The current-voltage characteristics of a silicon nanochain is investigated. The nanochain is viewed ...
The scaling of Silicon (Si) technology is approaching the physical limit, where various quantum effe...
We use magneto-transport spectroscopy to study a dramatic instability between a low and high conduc...
International audienceThe transport phenomena in Metal-Oxide-Semiconductor (MOS) structures having s...
We have made extensive studies of the temperature, gate voltage, and electric field dependences of t...
A heteroquantum-dots (HQD) model for hydrogenated nanocrystalline silicon films (nc-Si:H) is propose...
We studied resonant electron tunneling through individual CdSe and CdS nanocrystals in two types of ...
[[abstract]]Frequency-dependent capacitance-voltage spectroscopy was applied to investigate the carr...
We suggest a new theory for the description of electrical conductivity of semiconductor quantum nano...
Low-temperature vertical carrier transport in layered structures comprised of $\chem{Si}$ nanocrysta...
We have fabricated organically capped stable luminescent silicon nanocrystals with narrow size distr...
A nanocrystal Si (nc-Si) distributed in a narrow layer in the gate oxide close to the gate is synthe...
Colloidal semiconductor nanocrystals (NCs) are quantum-size-effect tunable and processible from orga...
Measurements of the temperature and carrier-density dependence of the strongly localized conductance...
The transport characteristics of both electrons and holes through narrow constricted “wall-like” Sil...
The current-voltage characteristics of a silicon nanochain is investigated. The nanochain is viewed ...
The scaling of Silicon (Si) technology is approaching the physical limit, where various quantum effe...
We use magneto-transport spectroscopy to study a dramatic instability between a low and high conduc...
International audienceThe transport phenomena in Metal-Oxide-Semiconductor (MOS) structures having s...
We have made extensive studies of the temperature, gate voltage, and electric field dependences of t...
A heteroquantum-dots (HQD) model for hydrogenated nanocrystalline silicon films (nc-Si:H) is propose...
We studied resonant electron tunneling through individual CdSe and CdS nanocrystals in two types of ...
[[abstract]]Frequency-dependent capacitance-voltage spectroscopy was applied to investigate the carr...
We suggest a new theory for the description of electrical conductivity of semiconductor quantum nano...