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A new self-collimating shear acoustic mode in TeO/sub 2/ for large time-bandwidth multichannel Bragg cell applications

机译:TEO / SUB中的新型自直剪切声模式/用于大型时间带宽多通道布拉格单元应用

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Self-collimating modes in acousto-optics utilize the anisotropy of the crystalline AO material to create collimated acoustic beams. These modes are characterized by an acoustic inverse velocity surface with curvature C=|1-2b|=0, where b is the acoustic anisotropy coefficient. Self-collimating modes are particularly useful in multichannel Bragg cell devices where it is desirable to have a high packing density of channels to utilize the full two-dimensional capability of optical signal processing. Slow shear mode propagation in Tellurium Dioxide (TeO/sub 2/) in the [110] direction is particularly attractive for narrow bandwidth, large time-aperture AO Bragg cell devices because of its anomalously slow acoustic velocity. Acoustic diffraction spreading in this mode, however, is rather large (C=53.8). We have examined other directions of shear mode propagation in the [100]/[010] plane of TeO/sub 2/. We have found the curvature is a minimum (C=0.36) for propagation 14.6/spl deg/ from the [100] direction. The acoustic velocity, while not as low as that in the [110] direction, is still relatively slow at 2.31 mm//spl mu/s. The acoustic attenuation is -4.0 dB//spl mu/s/GHz2. The mode is characterized by a rather large energy walk-off angle of 57/spl deg/. We have fabricated a four-channel AO Bragg cell using this orientation. The transducers have a height of 0.3 mm with a center spacing of 1.1 mm. Schlieren images were obtained at a frequency of 170 MHz. Experimental results are in good agreement with theoretical calculations. The effect of the large energy walk-off for optical signal processing applications is discussed.
机译:声光学中的自准直模式利用晶体AO材料的各向异性来产生准直的声束。这些模式的特征在于具有曲率C = | 1-2B |曲率的声速度表面,其中B是声学各向异性系数。自准直模式在多通道布拉格单元设备中特别有用,其中希望具有高填充密度的通道,以利用光信号处理的全部二维能力。在[110]方向上的二氧化碲(TEO / SUB 2 /)中的慢剪切模式传播对于窄的带宽,大型时间孔径AO布拉格电池装置是特别吸引力,因为其异常慢的声速。然而,这种模式中的声衍射扩散相当大(C = 53.8)。我们已经检查了TEO / SUB 2 / SUB 2 / [100] / [010]中的剪切模式传播的其他方向。我们发现曲率是最小(C = 0.36),用于传播14.6 / SPL DEG /来自[100]方向。声速度,而不是在[110]方向上的情况下,仍然相对较慢,在2.31 mm // spl mu / s。声学衰减为-4.0 db // spl mu / s / ghz2。该模式的特征在于57 / SPL DEG /的相当大的能量行驶角度。我们使用这种方向制造了一个四通道AO布拉格单元格。换能器的高度为0.3毫米,中心间距为1.1毫米。 Schlieren图像以170 MHz的频率获得。实验结果与理论计算吻合良好。讨论了大能步行对光信号处理应用的影响。

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