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The achromatic chessboard, a new concept of a phase shifter fornulling interferometry III. Experimental performances

机译:消色差棋枰,一个前置干涉测量器III的相移器的新概念。实验性能

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Context. Dark fringe interferometry in the thermal infrared is one way to detect directly a planet orbiting a star, and so tocharacterize the planet's atmosphere through spectroscopy. This method demands a phase shift of π~1 in one arm of theinterferometer. In order to detect various bio-tracers gases, a broad wavelength range (6-18 μm)~(2-3)is necessary, thereforean achromatic phase shift of 7t is required. The achromatic device presented here is a phase shifter made of two cellularmirrors, in which each cell induces a specific phase shift. Aims. We wish to demonstrate that this theoretical concept is experimentally valid. We present in this paper the setupand the very first results. Methods. In a first step, we have consolidated the theoretical ground and in a second step we developed an optical benchin the visible domain to test the concept and measure the performances of this device. Results. The preliminary experimental tests show evidences that such a device is working as expected in terms of nullingand achromatism: in spite of an error on one cell of the prototype, it provides a nulling of 2.10~(-3),at one wavelength, andthis value is close to the expected value. Besides, a nulling of 1.10~(-2)in a 450 to 750 nm bandwidth: hint that a perfectdevice should be achromatic.
机译:语境。在热红外暗纹干涉是直接探测行星围绕一颗星,并通过分光镜,tocharacterize行星大气的一种方式。此方法要求π〜1的theinterferometer的一个臂的相移。为了检测各种生物示踪剂气体,在宽波长范围(6-18微米)〜(2-3)是必要的,需要7吨的thereforean消色差相移。这里提出的消色差器件是由两种cellularmirrors的移相器,其中,每个小区诱导特定相移。目标。我们希望证明,这种理论概念是实验有效。我们提出本文的setupand的第一个结果。方法。在第一步骤中,我们已巩固了理论基础,并且在第二步骤中,我们开发了一种光学本情可见光域测试的概念和测量该器件的性能。结果。初步的实验测试表明证据,这样的设备正在按预期在nullingand消色差的术语:尽管在原型的一个单元中的错误,它提供了2.10〜(-3),在一个波长,andthis值归零接近预期值。此外,为1.10〜(-2)在450至750nm带宽的调零:暗示一个perfectdevice应该是消色差的。

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