Quantum dots (QDs) are used as nanometer-sized in situ charge probes for surfaces exposed to plasma. Excess charges residing on an electrically floating surface immersed in a low-pressure argon plasma are detected and investigated by analysis of variations in the photoluminescence spectrum of laser-excited QDs that were deposited on that surface. The experimentally demonstrated redshift of the PL spectrum peak is linked to electric fields associated with charges near the QDs’ surfaces, a phenomenon entitled the quantum-confined Stark effect. Variations in the surface charge as a function of plasma input power result in different values of the redshift of the peak position of the PL spectrum. The values of redshift are detected as 0.022 nm a...
Properly designed colloidal semiconductor quantum dots (QDs) have already been shown to exhibit high...
Making use of droplet epitaxy, we systematically controlled the height of self-assembled GaAs quantu...
Making use of droplet epitaxy, we systematically controlled the height of self-assembled GaAs quantu...
Quantum dots (QDs) are used as nanometer-sized in situ charge probes for surfaces exposed to plasma....
Quantum dots (QDs) are used as nanometer-sized in situ charge probes for surfaces exposed to plasma....
Quantum dots (QDs) are used as nanometer-sized in situ charge probes for surfaces exposed to plasma....
Quantum dots (QDs) are used as nanometer-sized in situ charge probes for surfaces exposed to plasma....
We experimentally demonstrate that the interaction between plasma and nanometer-sized semiconductor ...
We experimentally demonstrate that the interaction between plasma and nanometer-sized semiconductor ...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
Properly designed colloidal semiconductor quantum dots (QDs) have already been shown to exhibit high...
Making use of droplet epitaxy, we systematically controlled the height of self-assembled GaAs quantu...
Making use of droplet epitaxy, we systematically controlled the height of self-assembled GaAs quantu...
Quantum dots (QDs) are used as nanometer-sized in situ charge probes for surfaces exposed to plasma....
Quantum dots (QDs) are used as nanometer-sized in situ charge probes for surfaces exposed to plasma....
Quantum dots (QDs) are used as nanometer-sized in situ charge probes for surfaces exposed to plasma....
Quantum dots (QDs) are used as nanometer-sized in situ charge probes for surfaces exposed to plasma....
We experimentally demonstrate that the interaction between plasma and nanometer-sized semiconductor ...
We experimentally demonstrate that the interaction between plasma and nanometer-sized semiconductor ...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
We investigated the possibility of using a layer of quantum dots (QDs) deposited on the microparticl...
Properly designed colloidal semiconductor quantum dots (QDs) have already been shown to exhibit high...
Making use of droplet epitaxy, we systematically controlled the height of self-assembled GaAs quantu...
Making use of droplet epitaxy, we systematically controlled the height of self-assembled GaAs quantu...