![](https://static.wixstatic.com/media/629dcb_73cc7947f59d41208e3cfee3de2bd8fe~mv2.jpg/v1/fill/w_1395,h_930,al_c,q_85,enc_avif,quality_auto/629dcb_73cc7947f59d41208e3cfee3de2bd8fe~mv2.jpg)
Capabilities
Sêr SAM's lab is located at Swansea University's Singleton Campus. The group takes care to deliver state of the art research and results and possesses a variety of apparatuses, many of which were built in-house.
Capabilities
Sêr SAM's lab is located at Swansea University's Singleton Campus. The group takes care to deliver state of the art research and results and possesses a variety of apparatuses, many of which were built in-house.
Angular dependent photo and electroluminescence
![Angular Dependent thing.jpg](https://static.wixstatic.com/media/45cf45_ffc84c5f6f894b47a8426d91b997b344~mv2.jpg/v1/fill/w_342,h_510,al_c,q_80,usm_0.66_1.00_0.01,enc_avif,quality_auto/Angular%20Dependent%20thing.jpg)
Our fully automated home-built apparatus can measure angular and polarisation dependent light emission of LEDs and thin film samples being excited with a laser. Molecular dipolar orientation can be determined from these measurements in conjunction with numerical simulations.
The angular dependent photo- and electroluminescence setup allows for a wavelength dependent excitation of thin film samples, where different CW laser units provide excitation wavelengths between 405 nm and 975 nm. The photo-and electroluminescence signals of the device under test can be detected using different photodiode sensors or ultra-fast photo-receivers with variable gain.