RodrÃguez-Gómez, A.; Sicard, M.; Granados-Muñoz, M.-J.; Ben Chahed, E.; Muñoz-Porcar, C.; Barragán, R.; Comerón, A.; Rocadenbosch, F.; Vidal, E.
An Architecture Providing Depolarization Ratio Capability for a Multi-Wavelength Raman Lidar: Implementation and First Measurements. Sensors 2017, 17, 2957.
https://doi.org/10.3390/s17122957
AMA Style
RodrÃguez-Gómez A, Sicard M, Granados-Muñoz M-J, Ben Chahed E, Muñoz-Porcar C, Barragán R, Comerón A, Rocadenbosch F, Vidal E.
An Architecture Providing Depolarization Ratio Capability for a Multi-Wavelength Raman Lidar: Implementation and First Measurements. Sensors. 2017; 17(12):2957.
https://doi.org/10.3390/s17122957
Chicago/Turabian Style
RodrÃguez-Gómez, Alejandro, Michaël Sicard, MarÃa-José Granados-Muñoz, Enis Ben Chahed, Constantino Muñoz-Porcar, Rubén Barragán, Adolfo Comerón, Francesc Rocadenbosch, and Eric Vidal.
2017. "An Architecture Providing Depolarization Ratio Capability for a Multi-Wavelength Raman Lidar: Implementation and First Measurements" Sensors 17, no. 12: 2957.
https://doi.org/10.3390/s17122957
APA Style
RodrÃguez-Gómez, A., Sicard, M., Granados-Muñoz, M.-J., Ben Chahed, E., Muñoz-Porcar, C., Barragán, R., Comerón, A., Rocadenbosch, F., & Vidal, E.
(2017). An Architecture Providing Depolarization Ratio Capability for a Multi-Wavelength Raman Lidar: Implementation and First Measurements. Sensors, 17(12), 2957.
https://doi.org/10.3390/s17122957