Aggregation processes of colloidal particles are of broad scientific and technological relevance. The earliest stage of aggregation, when dimers appear in an ensemble of single particles, is very important to characterize because it opens routes for further aggregation processes. Furthermore, it represents the most sensitive phase of diagnostic aggregation assays. Here, we characterize dimers by rotating them in a magnetic field and by recording the angle dependence of light scattering. At small scattering angles, the scattering cross section can be approximated by the total cross-sectional area of the dimer. In contrast, at scattering angles around 90 degrees, we reveal that the dependence of the scattering cross section on the dimer angle...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
Aggregation processes of colloidal particles are of broad scientific and technological relevance. Th...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We describe an optomagnetic cluster experiment to understand and control the interactions between pa...
We demonstrate a novel approach to quantify the interparticle distance in colloidal dimers using Mie...