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Instruments without optics: an integrated photonic spectrograph

机译:没有光学器件:集成的光子光谱仪

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In recent years, a great deal of emphasis has been placed on achieving the diffraction limit with large aperture telescopes. For a well matched focal-plane instrument, the diffraction limit provides the highest possible angular resolution and sensitivity per pixel. But it offers another key advantage as we now show. Conventionally, as the telescope aperture D grows, the instrument size grows in proportion to D, and the cost increases as D~2 or faster. However, an instrument that operates at the diffraction limit can break the trend of spiralling costs. In traditional instruments, the light must pass through a succession of large lenses, mirrors and gratings, making it difficult to conserve the integrity of such a small psf. An alternative approach, as we now show, is to couple the diffraction-limited beam directly into an integrated photonic spectrograph operating in low-order modes.
机译:近年来,已经对大型孔径望远镜实现了衍射极限进行了大量重点。对于匹配良好的焦平面仪器,衍射限制提供了每像素的最佳角度分辨率和灵敏度。但它提供了我们现在显示的另一个主要优势。传统上,随着望远镜孔径D的生长,仪器尺寸与D成比例地增长,成本随着D〜2或更快而增加。然而,在衍射极限下操作的仪器可以破坏螺旋成本的趋势。在传统的仪器中,光必须通过一系列大镜头,镜子和光栅,使得难以保护这种小PSF的完整性。如我们现在所示,一种替代方法是将衍射限制光束直接耦合到以低阶模式运行的集成光子光谱仪。

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