Title :
Programming optical states in VO2 film for IR phototherapy
Author :
Davila, Noraica ; Cabrera, Rafmag ; Sepulveda, Nelson
Author_Institution :
Dept. of Electr. & Comput. Eng., Michigan State Univ., East Lansing, MI, USA
Abstract :
This work presents a new technology suitable for localized infrared (IR) phototherapy. Specified regions of a VO2 thin film were programmed to different transmissivity values in the near IR. Such programming was done through photothermal actuation of the thin film, achieved by controlling the scanning of a red laser over its surface. The thermally-induced phase transition of the VO2 thin film comes with an abrupt change in its transmittance, which (due to its hysteretic behavior) can be stored; allowing for the programming of optical memory states in the films. Several patterns were stored and read through a simple optical system. A single film can store one pattern at a time. The nature of this material allows for a relatively fast reconfiguration of the stored pattern. After a specific pattern was programmed on the film, an IR image was projected by illumination of the entire VO2 film with an IR beam. The image was detected by a laser beam profiler (LBP). This pattern storage and projection technology proves promising in the development of applications for treatments of IR phototherapy.
Keywords :
biothermics; laser applications in medicine; optical storage; phase transformations; photodynamic therapy; thin films; vanadium compounds; IR beam; IR image; IR phototherapy; VO2; VO2 thin film illumination; hysteretic behavior; laser beam profiler; localized infrared phototherapy; optical memory state programming; pattern storage; photothermal actuation; projection technology; red laser scanning; relatively fast reconfiguration; specific pattern; thermally-induced phase transition; transmissivity values;
Conference_Titel :
Nanotechnology Materials and Devices Conference (NMDC), 2012 IEEE
Conference_Location :
Waikiki Beach, HI
Print_ISBN :
978-1-4673-2871-5
DOI :
10.1109/NMDC.2012.6527604