论文标题

鹰模拟中星系的扩展无线电连续发射的固有比对

Intrinsic alignments of the extended radio continuum emission of galaxies in the EAGLE simulations

论文作者

Hill, Alexander D., Crain, Robert A., McCarthy, Ian G., Brown, Shaun T.

论文摘要

我们介绍了鹰模拟中星系中星系气体的固有比对(IAS)的测量。该气体的无线电连续成像可以使宇宙剪切测量与光学调查互补。我们测量形成气体相对于相邻星系的方向和方向的方向。恒星形成气体表现出优先的径向取向方向对齐,这是银河系对分离的降低功能,但在$ z = 0 $的$ \ gtrsim 1 $ mpc仍然显着。对齐在质量上与恒星所表现出的一致性相似,但在固定分离时较弱。由更大的次音托管的一对星系在固定的分离下表现出更强的对准,但是近对的强对准以$ {\ sim} l^\ star $ Galaxies及其卫星为主。在固定的共同分离时,径向比对在较高的红移时更强。尽管亚剖光表现出优惠的平行后轴比对,但方向 - 取向对准与所有分离的随机分离是一致的。与恒星相比,恒星形成气体的IA弱源于前者的趋势与星系的暗物质结构相比,而不是后者的趋势,这意味着在无线电连续性弱透镜调查中,由于IA引起的系统不确定性可能比光学对应器中的严重严重。因此,将星形气盘的取向与恒星盘或宿主亚李氏菌的DM结构相当的比对模型将高估IAS对无线电连续体宇宙剪切测量的影响。

We present measurements of the intrinsic alignments (IAs) of the star-forming gas of galaxies in the EAGLE simulations. Radio continuum imaging of this gas enables cosmic shear measurements complementary to optical surveys. We measure the orientation of star-forming gas with respect to the direction to, and orientation of, neighbouring galaxies. Star-forming gas exhibits a preferentially radial orientation-direction alignment that is a decreasing function of galaxy pair separation, but remains significant to $\gtrsim 1$ Mpc at $z=0$. The alignment is qualitatively similar to that exhibited by the stars, but is weaker at fixed separation. Pairs of galaxies hosted by more massive subhaloes exhibit stronger alignment at fixed separation, but the strong alignment of close pairs is dominated by ${\sim}L^\star$ galaxies and their satellites. At fixed comoving separation, the radial alignment is stronger at higher redshift. The orientation-orientation alignment is consistent with random at all separations, despite subhaloes exhibiting preferential parallel minor axis alignment. The weaker IA of star-forming gas than for stars stems from the former's tendency to be less well aligned with the dark matter structure of galaxies than the latter, and implies that the systematic uncertainty due to IA may be less severe in radio continuum weak lensing surveys than in optical counterparts. Alignment models equating the orientation of star-forming gas discs to that of stellar discs or the DM structure of host subhaloes will therefore overestimate the impact of IAs on radio continuum cosmic shear measurements.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源