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ORIGIN: metal creation and evolution from the cosmic dawn

机译:起源:从宇宙黎明开始的金属创造和进化

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ORIGIN is a proposal for the M3 mission call of ESA aimed at the study of metal creation from the epoch of cosmic dawn. Using high-spectral resolution in the soft X-ray band, ORIGIN will be able to identify the physical conditions of all abundant elements between C and Ni to red-shifts of z = 10, and beyond. The mission will answer questions such as: When were the first metals created? How does the cosmic metal content evolve? Where do most of the metals reside in the Universe? What is the role of metals in structure formation and evolution? To reach out to the early Universe ORIGIN will use Gamma-Ray Bursts (GRBs) to study their local environments in their host galaxies. This requires the capability to slew the satellite in less than a minute to the GRB location. By studying the chemical composition and properties of clusters of galaxies we can extend the range of exploration to lower redshifts (z ∼0.2). For this task we need a high-resolution spectral imaging instrument with a large field of view. Using the same instrument, we can also study the so far only partially detected baryons in the Warm-Hot Intergalactic Medium (WHIM). The less dense part of the WHIM will be studied using absorption lines at low redshift in the spectra for GRBs. The ORIGIN mission includes a Transient Event Detector (coded mask with a sensitivity of 0.4 photon/cm2/s in 10 s in the 5–150 keV band) to identify and localize 2000 GRBs over a five year mission, of which ∼65 GRBs have a redshift >7. The Cryogenic Imaging Spectrometer, with a spectral resolution of 2.5 eV, a field of view of 30 arcmin and large effective area below 1 keV has the sensitivity to study clusters up to a significant fraction of the virial radius and to map the denser parts of the WHIM (factor 30 higher than achievable with current instruments). The payload is complemented by a Burst InfraRed Telescope to enable onboard red-shift determination of GRBs (hence securing proper follow up of high-z bursts) and also probes the mildly ionized state of the gas. Fast repointing is achieved by a dedicated Controlled Momentum Gyro and a low background is achieved by the selected low Earth orbit.
机译:ORIGIN是欧空局M3任务调用的一项提案,旨在研究宇宙曙光时代金属的产生。使用软X射线波段中的高光谱分辨率,ORIGIN将能够识别C和Ni之间所有丰富元素的物理条件,直到z = 10或更高的红移。该任务将回答以下问题:第一批金属是什么时候产生的?宇宙中的金属含量如何演变?大多数金属在宇宙中的哪里?金属在结构形成和演化中的作用是什么?为了达到早期的宇宙起源,ORIGIN将使用伽玛射线暴(GRB)研究其宿主星系中的局部环境。这要求能够在不到一分钟的时间内将卫星转至GRB位置。通过研究星系团的化学组成和性质,我们可以将探测范围扩展到较低的红移(z〜0.2)。为此,我们需要具有大视野的高分辨率光谱成像仪器。使用相同的仪器,我们还可以研究在暖热星际介质(WHIM)中到目前为止仅部分检测到的重子。 WHIM的密度较小的部分将使用GRB光谱中低红移的吸收线进行研究。 ORIGIN任务包括一个瞬态事件检测器(编码面罩,在5–150 keV频段内在10 s内灵敏度为0.4 photon / cm 2 / s),可在五年内识别和定位2000个GRB任务,其中约65个GRB的红移大于7。低温成像光谱仪具有2.5 eV的光谱分辨率,30 arcmin的视野和1 keV以下的大有效面积,可用于研究高达病毒粒子半径很大一部分的聚类,并绘制出较密实部分的图谱。 WHIM(比当前仪器可达到的高30倍)。有效载荷配有爆裂红外望远镜以实现机载GRB的红移确定(从而确保正确跟踪高z脉冲),并探测气体的轻度电离状态。通过专用的受控动量陀螺仪可实现快速重指向,而通过选定的低地球轨道可实现低背景。

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