Newton STFC-NARIT - EXOhSPEC (Exoplanet high-resolution Spectrograph)
Newton STFC-NARIT - EXOhSPEC (Exoplanet high-resolution Spectrograph)
批准号:
ST/R006598/1
负责人:
Hugh Jones
金额:
$34.42万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2018
资助国家:
英国
项目状态:
已结题
起止时间:
2018 至 --
中文摘要
该项目是用目录部件建造一种新型的高分辨率光谱仪。这一概念依赖于将地球带来的复杂性与光谱仪单元本身的要求分开。这种分离使光谱仪方面的尺寸和复杂性得以大幅降低,是对其他地方正在开发的自适应光学技术的自然补充。这里展示的概念可能会被用来为下一代超大型望远镜节省数千万英镑的仪器成本,但也可以在大学、公共和业余天文台上复制,并为在更广泛的市场上购买效率低下的大型傅里叶变换光谱仪提供了一个有竞争力的替代方案。我们希望展示的关键发展是:(1)紧凑、廉价的设计,可以在波长覆盖和光谱分辨率方面实现与现有仪器相同的性能;(2)为系统量身定做有源计量/驱动,以极小的建造和操作成本实现-甚至超过-最佳波长校准稳定性,并生产设施仪器。虽然这台仪器的原型是在赫特福德郡大学进行的,但设施仪器将在泰国生产,但从在新的0.7米飞机上操作原型版本获得的洞察力。泰国政府对泰国国家天文研究所进行了大笔投资,因此他们有了新的实验室来建造仪器,并可以立即获得新的70万台仪器。目前的高分辨率光谱仪体积庞大、价格昂贵、维护困难,而且仅限于全球少数几所大学和团体中的精英。此外,由于这些仪器非常昂贵,技术周期和设计变化很小,没有利用新材料和大规模生产的光学元件的巨大质量改进和成本降低的优势。从某种意义上说,我们想要拥抱的技术飞跃,就像是从第一代数码相机到目前的智能手机技术之间的飞跃。一个国家的经济发展和福利取决于关键的基础设施和劳动力的能力。在物理学领域,特别是天体物理学领域,设计和制造仪器以及测量和解释其他行星、恒星和星系中跃迁的性质的能力是理解宇宙性质的关键基石。几十年来,高分辨率光谱学一直是天体物理学的主要工具,也是推动新的基础天体物理学的动力。从发现附近恒星周围的行星到直接测量宇宙的大小。在世界范围内,长期以来,超额认购最多的望远镜仪器是高分辨率光谱仪。尽管泰国有一个大型望远镜和一些较小的望远镜,但它没有高分辨率的光谱仪。该提议旨在利用海外发展援助资金发展泰国的基础设施和能力,同时开启一种新的合作,这应该会给英国的科学家和工程师带来长期利益。
英文摘要
The project is to build from catalogue components a new kind of high-resolution spectrograph. The concept relies on separating the complexity introduced by Earth from the requirements of the spectrometer unit itself. This separationenables a massive reduction in size and complexity on the spectrometer side and it is the natural complement to Adaptive Optics technologies being developed elsewhere. The concepts demonstrated here might be used to save tens of millions of pounds in instrumentation costs on the coming generation of extremely large telescopes but also be reproducible by University, public and amateur observatories and offer a competitive alternative to the purchase of large inefficient Fourier transform spectrometers in the wider marketplace. The key developments that we wish to demonstrate are, (1) a compact inexpensive design that can achieve the same performance as existing instruments in terms of wavelength coverage and spectral resolution and (2) bespoke active metrology/actuation of the system to achieve -or even surpass- the best wavelength calibration stability at a fraction of construction and operation costs and to produce a facility instrument. While the prototyping for this instrument is at the University of Hertfordshire, the facility instrument will be produced in Thailand but with the insight gained from operating a prototype version on the new 0.7m. The Thai government has made a large investment in the National Astronomical Research Institute of Thailand and so they have the new laboratories in which to build the instrument as well as immediate access to a new 0.7m. Current high-resolution spectrographs are large, expensive and difficult to maintain and are reserved to an elite of a handful universities and groups around the globe. Moreover, because these instruments are so expensive, technology cycles and designs have evolved very little and do not take advantage of the great quality improvement and reduced costs of new materials and mass produced optics. In a sense, the technological leap we want to embrace is like the one between the first digital cameras to the current smartphone technology. The economic development and welfare of a country relies on key infrastructure and the capabilities of the workforce. In the field of physics and in particular astrophysics, the ability to design and make instruments and to measure and interpret the properties of the transitions in other planets, stars and galaxies is a key cornerstone to understand the properties of the Universe. High-resolution spectroscopy has for decades being a primary tool of astrophysics and a driving force in enabling new fundamental astrophysics. From the discovery of planets around nearby stars to the direct measurement of the size of the Universe. Worldwide, the most oversubscribed instruments on telescopes have long been the high-resolution spectrographs. Although Thailand has a large telescope and a number of smaller ones it does not have a high resolution spectrograph. The proposal is aimed at using Overseas Development Aid funding to develop Thai infrastructure and capabilities while at the same time opening up a new collaboration which should have long-term benefit to the UK scientists and engineers.
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Incoherent light in tapered graded-index fibre: A study of transmission and modal noise
锥形渐变折射率光纤中的非相干光:传输和模态噪声的研究
DOI:
10.1016/j.yofte.2022.103140
发表时间:
2023
期刊:
Optical Fiber Technology
影响因子:
2.7
作者:
[Choochalerm P]
通讯作者:
Choochalerm P
Mitigating modal noise in multimode circular fibres by optical agitation using a galvanometer
使用检流计通过光搅拌减轻多模圆形光纤中的模态噪声
DOI:
10.1093/rasti/rzad059
发表时间:
2024
期刊:
RAS Techniques and Instruments
影响因子:
--
作者:
[Ghosh S]
通讯作者:
Ghosh S
A Small Actively Controlled High-resolution Spectrograph Based on Off-the-shelf Components
基于现成组件的小型主动控制高分辨率摄谱仪
DOI:
10.1088/1538-3873/abc7ee
发表时间:
2021
期刊:
Publications of the Astronomical Society of the Pacific
影响因子:
3.5
作者:
[Jones H]
通讯作者:
Jones H
HiFLEx -- a highly flexible package to reduce cross-dispersed echelle spectra
HiFLEx——一种高度灵活的封装,可减少交叉色散中阶梯光栅光谱
DOI:
10.48550/arxiv.2006.09899
发表时间:
2020
期刊:
影响因子:
--
作者:
[Errmann R]
通讯作者:
Errmann R
Efficient Follow-up of Exoplanet Transits Using Small Telescopes
使用小型望远镜有效跟踪系外行星凌日
DOI:
10.1088/1538-3873/ab1eb4
发表时间:
2019
期刊:
Publications of the Astronomical Society of the Pacific
影响因子:
3.5
作者:
[Beck P]
通讯作者:
Beck P
共 7 条
Institutional Sponsorship for Hertfordshire
-
批准号:ST/W508020/1
-
项目类别:Research Grant
-
资助金额:$6.37万
-
财政年份:2021
-
负责人:Hugh Jones
-
依托单位:
Newton STFC-NARIT: EXOhSPEC (Exoplanet high-resolution Spectrograph)
-
批准号:ST/T007311/1
-
项目类别:Research Grant
-
资助金额:$34.65万
-
财政年份:2020
-
负责人:Hugh Jones
-
依托单位:
Newton STFC-NARIT - EXOhSPEC
-
批准号:ST/P005667/1
-
项目类别:Research Grant
-
资助金额:$9.17万
-
财政年份:2017
-
负责人:Hugh Jones
-
依托单位:
Galactic Astronomy at the University of Hertfordshire
-
批准号:ST/G002622/1
-
项目类别:Research Grant
-
资助金额:$230.74万
-
财政年份:2009
-
负责人:Hugh Jones
-
依托单位:
海外基金