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首页> 外文期刊>The Astrophysical journal >Temperature Differences In The Cepheid Instability Strip Require Differences In The Period-luminosity Relation In Slope And Zero Point
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Temperature Differences In The Cepheid Instability Strip Require Differences In The Period-luminosity Relation In Slope And Zero Point

机译:造父变星带不稳定的温度差要求坡度和零点的周期-发光关系不同

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A graphical and an algebraic demonstration is made to show why the slope and zero point of the Cepheid period-luminosity (P-L) relation is rigidly coupled with the slope and zero point of the Cepheid instability strip in the HR diagram. In this way it is shown why it is logically inconsistent to adopt a fixed P-L slope for all galaxies if the intrinsic color-period relations differ in slope for some of them. The graphical demonstration of this inconsistency uses an arbitrary (toy) ridgeline in the instability strip, while the algebraic demonstration uses the pulsation equation into which the observed P-L relations for the Galaxy and the LMC are put to predict the temperature zero points and slopes of the instability strips. Agreement between the predicted and the observed slopes in the instability strips argue that the observed P-L differences between the Galaxy and LMC are real. The direct evidence for different P-L slopes in different galaxies is displayed by comparing the Cepheid data in the Galaxy, the combined data in NGC 3351 and NGC 4321, in M31, LMC, SMC, IC 1613, NGC 3109, and in Sextans A+B. The P-L slopes for the Galaxy, NGC 3351, NGC 4321, and M31 are nearly identical and are the steepest in the sample. The P-L slopes decrease monotonically with metallicity in the order listed, showing that the P-L relation is not the same in different galaxies, complicating their use in calibrating the extragalactic distance scale.
机译:进行了图形和代数演示,以显示HR图中造父变星周期-发光度(P-L)关系的斜率和零点与造父变星不稳定性带的斜率和零点刚性耦合的原因。通过这种方式可以说明,如果固有星系的颜色周期关系在某些星系中的斜率不同,那么为什么对所有星系采用固定的P-L斜率在逻辑上是不一致的。这种不一致性的图形演示使用了不稳定带中的任意(玩具)脊线,而代数演示则使用了脉动方程,将观测到的银河系和LMC的PL关系放入其中,以预测温度的零点和斜率。不稳定带。不稳定性带中的预测斜率和观测斜率之间的一致性表明,银河系和LMC之间的观测到的P-L差异是真实的。通过比较星系中的造父变星数据,NGC 3351和NGC 4321,M31,LMC,SMC,IC 1613,NGC 3109和Sextans A + B中的组合数据,可以显示出不同星系中不同PL斜率的直接证据。 。 Galaxy,NGC 3351,NGC 4321和M31的P-L斜率几乎相同,并且在样品中最陡。 P-L斜率按列出的顺序随金属性单调递减,这表明在不同星系中P-L关系不相同,这使它们在校准银河外距离标度时变得复杂。

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