论文标题

具有多核光纤馈线的积分单元

Diffraction-limited integral-field spectroscopy for extreme adaptive optics systems with the Multi-Core fiber-fed Integral-Field Unit

论文作者

Haffert, Sebastiaan Y., Harris, Robert J., Zanutta, Alessio, Pike, Fraser A., Bianco, Andrea, Redaelli, Eduardo, Benoît, Aurélien, MacLachlan, David G., Ross, Calum A., Gris-Sánchez, Itandehui, Trappen, Mareike D., Xu, Yilin, Blaicher, Matthias, Maier, Pascal, Riva, Giulio, Sinquin, Baptiste, Kulcsár, Caroline, Bharmal, Nazim Ali, Gendron, Eric, Staykov, Lazar, Morris, Tim J., Barboza, Santiago, Muench, Norbert, Bardou, Lisa, Prengère, Léonard, Raynaud, Henri-François, Hottinger, Phillip, Anagnos, Theodoros, Osborn, James, Koos, Christian, Thomson, Robert R., Birks, Tim A., Snellen, Ignas A. G., Keller, Christoph U.

论文摘要

直接的成像仪器具有空间分辨率,可以从其宿主恒星中解析外科行星。这可以直接表征系外行星的大气,但是大多数直接成像仪器没有具有足够高的分辨力的光谱仪以详细的大气表征。我们研究了单模衍射限制的积分场单元的使用,该单元紧凑且易于集成到当前和将来的直接成像仪器中,以进行系外行列表征。通过利用光子制造中的最新进展来创建单模光纤馈线的图像改革者来实现这一目标。纤维链接是在单模多核纤维顶部的3D打印镜片中创建的,该镜片可为超快速激光刻有光子光子芯片提供,该光子芯片将纤维重新整整为伪斜率。然后,我们将其近使其将三重体积相位全息光栅的一阶光谱仪搭配起来,可在较大的带宽上具有高效率。该原型系统在4.2米的William Herschel望远镜上取得了成功的第一卷观测。根据波长,测得的天上分辨能力在2500至3000之间。通过我们的观察,我们表明单模积分场光谱是当前和未来系外行星成像仪器的可行选择。

Direct imaging instruments have the spatial resolution to resolve exoplanets from their host star. This enables direct characterization of the exoplanets atmosphere, but most direct imaging instruments do not have spectrographs with high enough resolving power for detailed atmospheric characterization. We investigate the use of a single-mode diffraction-limited integral-field unit that is compact and easy to integrate into current and future direct imaging instruments for exoplanet characterization. This achieved by making use of recent progress in photonic manufacturing to create a single-mode fiber-fed image reformatter. The fiber-link is created with 3D printed lenses on top of a single-mode multi-core fiber that feeds an ultrafast laser inscribed photonic chip that reformats the fiber into a pseudo-slit. We then couple it to a first-order spectrograph with a triple stacked volume phase holographic grating for a high efficiency over a large bandwidth. The prototype system has had a successful first-light observing run at the 4.2 meter William Herschel Telescope. The measured on-sky resolving power is between 2500 and 3000, depending on the wavelength. With our observations we show that single-mode integral-field spectroscopy is a viable option for current and future exoplanet imaging instruments.

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