765 research outputs found

    Search for Eccentric Binary Neutron Star Mergers in the first and second observing runs of Advanced LIGO

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    We present a search for gravitational waves from merging binary neutron stars which have non-negligible eccentricity as they enter the LIGO observing band. We use the public Advanced LIGO data which covers the period from 2015 through 2017 and contains ∼164\sim164 days of LIGO-Hanford and LIGO-Livingston coincident observing time. The search was conducted using matched-filtering using the PyCBC toolkit. We find no significant binary neutron star candidates beyond GW170817, which has previously been reported by searches for binaries in circular orbits. We place a 90% upper limit of ∼1700\sim1700 mergers Gpc−3Yr−1\textrm{Gpc}^{-3} \textrm{Yr}^{-1} for eccentricities ≲0.43\lesssim 0.43 at a dominant-mode gravitational-wave frequency of 10 Hz. The absence of a detection with these data is consistent with theoretical predictions of eccentric binary neutron star merger rates. Using our measured rate we estimate the sensitive volume of future gravitational-wave detectors and compare this to theoretical rate predictions. We find that, in the absence of a prior detection, the rate limits set by six months of Cosmic Explorer observations would constrain all current plausible models of eccentric binary neutron star formation

    Sizing-Up Connecticut’s Public Sector

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    Is non-federal government in Connecticut too large? Many think so and are happy to see state and local governments scaling back to balance their budgets in the face of a major recession and a drop in tax collections. But is government here as big as the critics contend? And, if so, is this strategically the right time to rein in public spending?

    CSI Connecticut

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