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Light intensity modulation by coccoliths of Emiliania huxleyi as a micro-photo-regulator

机译:ili草球藻微光调节剂对光强度的调节

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摘要

In this study, we present experimental evidence showing that coccoliths have light-scattering anisotropy that contributes to a possible control of solar light exposure in the ocean. Changing the angle between the incident light and an applied magnetic field causes differences in the light-scattering intensities of a suspension of coccoliths isolated from Emiliania huxleyi. The magnetic field effect is induced by the diamagnetic torque force directing the coccolith radial plane perpendicular to the applied magnetic fields at 400 to 500 mT. The developed technique reveals the light-scattering anisotropies in the 3-μm-diameter floating coccoliths by orienting themselves in response to the magnetic fields. The detached coccolith scatters radially the light incident to its radial plane. The experimental results on magnetically oriented coccoliths show that an individual coccolith has a specific direction of light scattering, although the possible physiological effect of the coccolith remains for further study, focusing on the light-scattering anisotropies of coccoliths on living cells.
机译:在这项研究中,我们提供的实验证据表明,椰壳岩具有光散射各向异性,有助于控制海洋中的太阳光暴露。改变入射光和施加的磁场之间的角度会导致从Em虫(Emililiania huxleyi)分离出的椰壳悬浮液的光散射强度差异。磁场效应是由抗磁性扭矩力引起的,该抗扭矩力将球墨铸铁径向平面定向为垂直于所施加磁场的400至500μmT。所开发的技术通过响应磁场的方向对其自身进行定向,从而揭示了直径为3μm的漂浮可可石的光散射各向异性。分离的球石将入射到其径向平面的光径向散射。对磁性取向的可可脂的实验结果表明,单个可可脂具有特定的光散射方向,尽管该可可脂的可能的生理作用仍需进一步研究,重点在于可可脂在活细胞上的光散射各向异性。

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