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Acousto-Optic Deflector with Heat Removal from the Piezotransducer by Sound Insulation of a Heat Radiator

机译:声光偏转器,通过隔热散热器的隔音器从压电转运器中除去热量

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摘要

A method is proposed for removing heat from the transducer of an acousto-optic deflector without substantial acoustic damping. The rear surface of the transducer and the heat-radiator surface are kept in contact through a thin sound-insulating fluid layer. The method is based on the considerable difference in the complex acoustic impedances for shear vibrations of fluids and a solid (the piezotransducer) by means of efficient heat transfer through the fluid. In the experiment, a continuous operation mode of the acousto-optic deflector is achieved with an acoustic wave intensity of more than 20 W/cm(2). The acousto-optic deflector has been created that operates in the Bragg diffraction mode with a phase-modulation index of 3 pi with an input continuous controlling electric power of 3 W. The deflector characteristics for a light wavelength of 1.06 mu m are as follows: diffraction efficiency no less than 90% in the 25 MHz frequency band at an absolute scanning angle of 40 mrad.
机译:提出了一种方法,用于从声光线转换器的换能器中除去热量,而不具有大致声阻尼。 换能器的后表面和散热器表面通过薄的隔音流体层保持接触。 该方法基于通过通过流体的有效热传递的剪切振动和固体(压电转搅拌器)的复杂声学阻抗的相当差异。 在实验中,使用大于20W / cm(2)的声波强度实现了声光偏转器的连续操作模式。 已经创建了声光偏转器,其在布拉格衍射模式下操作,具有3个PI的相位调制指数,其中输入连续控制电力为3W。光波长为1.06 mu m的偏转器特性如下: 在40mRad的绝对扫描角度下,25 MHz频带中的衍射效率不小于90%。

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