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Binary compact object inspiral: Detection expectations

机译:二进制紧凑对象启发式:检测期望

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We review the current estimates of binary compact object inspiral rates in particular in view of the recently discovered highly relativistic binary pulsar J0737-3039. One of the robust results is that, because of this discovery, the rate estimates for binary neutron stars have increased by a factor of 6-7 independent of any uncertainties related to the pulsar population properties. This rate increase has dramatic implications for gravitational wave detectors, For initial LIGO, the most probable detection rates for double neutron star (DNS) inspirals is 1 event/(5-250) yr; at 95% confidence we obtain rates up to 1/1.5 yr. For advanced LIGO, the most probable rates are 20-1000 events/yr. These predictions, for the first time, bring the expectations for DNS detections by initial LIGO to the astrophysically relevant regime. We also use our models to predict that the large-scale Parkes multibeam pulsar survey with acceleration searches could detect an average of three to four binary pulsars similar to those known at present. In comparison, rate estimates for binaries with black holes are derived based on binary evolution calculation, and based on the optimistic ends of the ranges, remain an important candidate for inspiral detection in the next few years. We also consider another aspect of the detectability of binary inspiral: the effect of precession on the detection efficiency of astrophysically relevant binaries. Based on our current astrophysical expectations, large tilt angles are not favored. As a result the decrease in detection rate varies rather slowly with black hole spin magnitude and is within 20-30% of the maximum possible values.
机译:考虑到最近发现的高度相对论的二进制脉冲星J0737-3039,我们特别回顾了二进制紧凑物体吸气率的当前估计。有力的结果之一是,由于这一发现,双星中子星的速率估计已增加了6-7倍,而与脉冲星种群特性有关的任何不确定性均与之无关。这个速率的增加对重力波探测器产生了巨大的影响。对于初始LIGO,双中子星(DNS)吸气的最可能探测速率是1事件/(5-250)年。在95%的置信度下,我们得出的利率高达1 / 1.5年。对于高级LIGO,最可能的发生率是每年20-1000个事件。这些预测首次将最初的LIGO对DNS检测的期望带到了与天体有关的机制。我们还使用我们的模型来预测,采用加速搜索的大规模Parkes多光束脉冲星调查可以检测到平均三到四个二元脉冲星,与目前已知的类似。相比之下,带有黑洞的二进制文件的速率估计是基于二进制演化计算得出的,并且基于范围的最佳端值,仍然是未来几年进行吸气检测的重要候选者。我们还考虑了二进制Inspiral的可检测性的另一个方面:岁差对天体相关二进制文件的检测效率的影响。根据我们目前的天文学预期,不建议使用大的倾斜角度。结果,检测率的降低随黑洞自旋幅度的变化相当缓慢,并且在最大可能值的20-30%之内。

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