论文标题

光谱互相关技术的天体解决方案

Astrophotonic Solutions for Spectral Cross-Correlation Techniques

论文作者

Sivanandam, Suresh, Cheriton, Ross, Zavyalova, Polina, Herman, Peter R., Deibert, Emily, Tonita, Erin, Artyshchuk, Volodymyr, de Mooij, Ernst, Janz, Siegfried, Densmore, Adam

论文摘要

使用光子设备,我们开发了一种新的方法,用于传统光谱法,其中可以完全在设备上进行使用模板光谱的光谱互相关。通过创建具有经过精心设计的调制传输频谱的光子设备,可以在不需要任何色散的情况下进行光学进行互相关,从而大大简化仪器并降低其成本。测得的相关滞后可用于检测内部的原子/分子物种并确定特定天体物理对象的径向速度。 我们介绍了目前正在开发使用不同光子平台的两种设计方法:基于硅和纤维的光子学。硅光子方法利用了可以在热选择性调制的环谐振器进行互相关的环谐振器。纤维方法使用定制的纤维布拉格光栅(FBG)和可以应变调节的传输光谱。两种方法都能够在实验室环境中检测分子气体,现在我们正在天上测试中。 最后,我们讨论了这些类型的设备的未来,因为它们的简单性打开了开发低成本,专用的多对象或整体田间光谱仪器的可能性,这些仪器可能会为需要出色的RV测量和系外行星探测的科学计划做出重大贡献。

Using photonic devices, we developed a new approach to traditional spectroscopy where the spectral cross-correlation with a template spectrum can be done entirely on-device. By creating photonic devices with a carefully designed, modulated transmission spectrum, the cross-correlation can be carried out optically without requiring any dispersion, vastly simplifying the instrument and reducing its cost. The measured correlation lag can be used for detecting atomic/molecular species within and determining the radial velocity of a particular astrophysical object. We present an overview of two design approaches that are currently being developed that use different photonic platforms: silicon and fibre-based photonics. The silicon photonic approach utilizes ring resonators that can be thermo-optically modulated to carry out the cross-correlation. The fibre approach uses customized fibre Bragg gratings (FBGs) with transmission spectra that can be strain-modulated. Both approaches have been able to detect molecular gas in a lab setting, and we are now in the process of on-sky testing. Lastly, we discuss the future for these types of devices as their simplicity opens up the possibility of developing low-cost, purpose-built multi-object or integral field spectroscopic instruments that could make significant contributions to scientific programs requiring stellar RV measurements and exoplanet detections.

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