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>UNE EN ISO 12005:2022 - Lasers and laser-related equipment - Test methods for laser beam parameters - Polarization (ISO 12005:2022) (Endorsed by Asociación Española de Normalización in July of 2022.)
sklademVydáno: 2022-07-01
UNE EN ISO 12005:2022 - Lasers and laser-related equipment - Test methods for laser beam parameters - Polarization (ISO 12005:2022) (Endorsed by Asociación Española de Normalización in July of 2022.)

UNE EN ISO 12005:2022

Lasers and laser-related equipment - Test methods for laser beam parameters - Polarization (ISO 12005:2022) (Endorsed by Asociación Española de Normalización in July of 2022.)

Láseres y equipos asociados a los láseres. Métodos de ensayo de los parámetros del haz láser. Polarización (ISO 12005:2022) (Ratificada por la Asociación Española de Normalización en julio de 2022.)

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Označení normy:UNE EN ISO 12005:2022
Počet stran:25
Vydáno:2022-07-01
Status:Norma
DESCRIPTION

UNE EN ISO 12005:2022

This document specifies a method for determining the polarization status and, whenever possible, the degree of polarization of the beam from a continuous wave (cw) laser. It can also be applied to repetitively pulsed lasers, if their electric field vector orientation does not change from pulse to pulse. This document also specifies the method for determining the direction of the electric-field vector oscillation in the case of linearly polarized (completely or partially) laser beams. It is assumed that the laser radiation is quasimonochromatic and sufficiently stable for the purpose of the measurement. This document is applicable to radiation that has uniform polarization over its cross-sectional area. The knowledge of the polarization status can be very important for some applications of lasers with a high divergence angle, for instance when the beam of such a laser shall be coupled with polarization dependent devices (e.g. polarization maintaining fibres). This document also specifies a method for the determination of the state of polarization of highly divergent laser beams, as well as for the measurement of beams with large apertures.

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