A new method developed at the Vienna University of Technology can be used to grow biological tissue or to create micro sensors.

A new method developed at the Vienna University of Technology can be used to grow biological tissue or to create micro sensors.
Bringing in expertise from top world experts in the field, this is the most up-to-date and comprehensive survey of developments and applications in the field of fiber lasers. [XIV, 280 Pages, Hardcover]Read More...Powered by WPeMatico
Amplified stimulated emission is reported using CdSe-seeded CdS nanotetrapod optical gain media.
A European research team has made a breakthrough in the printing of organic electronics.
Optical communication technology, like diode lasers used in optical storage devices, is vital to the optoelectronics industry. Since the first edition, Diode Lasers and Photonic Integrated Circuits presents up-to-date information on optical communication...
Covers important aspects of today's knowledge on nonlinear laser dynamics, starting from nonlinear dynamical phenomena of semiconductor lasers and leading to the use of optical chaotic sources for synchronizing large laser networks and the application to chaos...
An elegant technique for self-assembling microlasers from droplets is reported in Advanced Optical Materials.
Professor Weiping Cai and co-workers have investigated the laser ablation/irradiation in liquid technique for producing nanomaterials.
New range of high power “BoostiK” single-frequency fiber lasers offering up to 15 W output with low phase noise and narrow linewidth.
The 660 nm laser diode has an optical output of max. 130 mW and an almost round beam profile.