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Novel multi-telescopes beam combiners for next generation instruments (FIRST/SUBARU)

机译:用于下一代仪器的新型多望远镜梁组合器(第一/斯巴鲁)

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Integrated optic devices are nowadays achieving extremely good performances in the field of astronomical interferometry, as shown by PIONIER or GRAVITY silica/silicon-based instruments, already installed at VLTI. In order to address other wavelengths, increase the number of apertures to be combined and eventually ensure on-chip phase modulation, we are working on a novel generation of beam combiners, based on the hybridization of glass waveguides, that can ensure very sharp bend radius, high confinement and low propagation losses, together with lithium niobate phase modulators and channel waveguides that can achieve on-chip, fast (>100kHz) phase modulation. The work presented here has been realized in collaboration with our technological partners TeemPhotonics for glass waveguides and iXBlue-PSD for lithium niobate phase modulators. We will present our results on a hybrid glass/niobate (passive/active) beam combiner that has been developed in the context of FIRST/SUBARU 9T beam combiner. The combiner is structured in three parts: a) the first stage (passive glass) achieves beam splitting from one input to eight outputs, and that for nine input fibers coming from the sub-apertures of the Subaru telescope ; b) the second stage consists on a 72 channel waveguides lithium niobate phase modulator in a push-pull configuration that allows to modify on-chip the relative phase between the 36 pairs of waveguides ; c) a final recombination system of Y-junctions (passive glass) that allows to obtain combination of each input to every other one. The aim of this presentation is to discuss different issues of the combiners, such as transmission, birefringence, half-wave voltage modulation and spectral range.
机译:如今,集成光学器件在天文干涉法领域实现了极为良好的性能,如已经安装在VLTI的先驱或重力二氧化硅/硅基仪器所示。为了解决其他波长,增加要组合的孔的数量,最终确保片上相位调制,我们正在研究一种新颖的梁组合器,基于玻璃波导的杂交,可以保证非常尖锐的弯曲半径,高限制和低传播损耗,与铌酸锂相调节器和沟道波导一起,可以实现片上,快速(> 100kHz)相位调制。这里提出的工作与我们的技术合作伙伴Teemphotonics合作,为玻璃波导和铌酸锂相位调节剂的IxBlue-PSD进行了协作。我们将在杂交玻璃/铌酸铌(被动/有效)光束组合器上呈现我们的结果,该梁组合器已经在第一/斯巴鲁9T光束组合器的背景下开发。组合器结构三部分:a)第一级(无源玻璃)实现从一个输入到八个输出的光束分裂,并且对于来自斯瓦鲁望远镜的子孔的九个输入纤维; b)第二阶段在推挽式配置中在一个72沟道波导锂铌酸锂相位调制器上组成,其允许改变片上的36对波导之间的相对相位; c)Y-结(被动玻璃)的最终重组系统,其允许将每个输入的组合获得给每个彼此。该呈现的目的是讨论组合器的不同问题,例如传输,双折射,半波电压调制和光谱范围。

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