论文标题

用于宽带nulling干涉法的光子三环和相位变速器的可观设计

Achromatic design of a photonic tricoupler and phase shifter for broadband nulling interferometry

论文作者

Klinner-Teo, Teresa, Martinod, Marc-Antoine, Tuthill, Peter, Gross, Simon, Norris, Barnaby, Leon-Saval, Sergio

论文摘要

无效干涉法是在恒星宜居区内成像系外行星的最有前途的技术之一。使用光子来进行无效的干涉法实现了外球星发现所需的对比度和分离。到目前为止,已经确定了限制电流的光子无效的两个关键问题:光束组合器内的相位变化和色度。 Tricouplers的使用解决了这两个局限性,提供了宽带,可观的无效,以及用于边缘跟踪的相位测量。在这里,我们介绍了三环(Tricoupler)的传输矩阵(包括其色素行为)的推导,以及我们的3D设计完全对称的三环形,该设计构建为构建的,该设计基于先前为Glint仪器提出的设计。当输入以反相为主时,它可以使具有对称的,基线相关的宽带无效分为一对明亮的通道。在某些设计贸易空间中,可以优先考虑科学信号或附带跟踪能力。我们还提出了一个锥形波导$ 180^\ Circ $ - 相变的移位器,相位变化为$ 0.6^\ Circ $在$ 1.4-1.7〜μ $ m频段中,在梁之间产生近乎光差的差速相位{用于最佳的Tricoupler nulling阶段的最佳操作}。可以集成两种设备,以提供深度的宽带空和实时边缘相位计量信号。

Nulling interferometry is one of the most promising technologies for imaging exoplanets within stellar habitable zones. The use of photonics for carrying out nulling interferometry enables the contrast and separation required for exoplanet detection. So far, two key issues limiting current-generation photonic nullers have been identified: phase variations and chromaticity within the beam combiner. The use of tricouplers addresses both limitations, delivering a broadband, achromatic null together with phase measurements for fringe tracking. Here, we present a derivation of the transfer matrix of the tricoupler, including its chromatic behaviour, and our 3D design of a fully symmetric tricoupler, built upon a previous design proposed for the GLINT instrument. It enables a broadband null with symmetric, baseline-phase-dependent splitting into a pair of bright channels when inputs are in anti-phase. Within some design trade space, either the science signal or the fringe tracking ability can be prioritised. We also present a tapered-waveguide $180^\circ$-phase shifter with a phase variation of $0.6^\circ$ in the $1.4-1.7~μ$m band, producing a near-achromatic differential phase between beams{ for optimal operation of the tricoupler nulling stage}. Both devices can be integrated to deliver a deep, broadband null together with a real-time fringe phase metrology signal.

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