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DETECTION OF GAMMA RAYS WITH E > 100 MeV FROM BL LACERTAE

机译:BL LACERTAE检测E> 100 MeV的伽玛射线

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We present evidence for the first detection of gamma rays from the extragalactic object BL Lacertae. Observations taken with EGRET on the Compton Gamma Ray Observatory between 1995 January 24 and 1995 February 14 indicate a 4.4 σ excess from the direction of BL Lacertae. The corresponding flux is (40 ± 12) x 10~(-8) photons cm~(-2) s~(-1) above 100 MeV. The combination of all previous observations where BL Lacertae was in EGRET's field of view result in a 2.4 σ excess and a corresponding 95% confidence upper limit of 14 x 10~(-8) photons cm~(-2) s~(-1), indicating that its gamma-ray emission is variable, at least on timescales of several months. Observations of BL Lacertae between 22 and 375 GHz were also taken between 1995 January 24 and 1995 February 14, and the flux levels for those measurements are similar to the historical average values for this object. A deep exposure on BL Lacertae with the Whipple Observatory 10 m gamma-ray telescope shows no evidence of emission above 350 GeV during a period 9 months after the EGRET observations. The 99.9% confidence flux upper limit derived from these observations is 0.53 x 10~(-11) photons cm~(-2) s~(-1), which implies a large reduction in the gamma-ray emission of BL Lacertae between EGRET and Whipple Observatory energies. This reduction should result from processes intrinsic to BL Lacertae because it is near enough to Earth that inter-galactic background IR fields should not significantly reduce the flux of gamma rays to which the Whipple Observatory telescope is sensitive.
机译:我们为首次从河外物体BL Lacertae探测到伽玛射线提供了证据。 1995年1月24日至1995年2月14日在康普顿伽玛射线天文台上用EGRET进行的观测表明,从BL Lacertae方向超出了4.4σ。对应的光通量为100 MeV以上的(40±12)x 10〜(-8)光子cm〜(-2)s〜(-1)。 BL Lacertae处于EGRET视野中的所有先前观察结果的组合导致2.4σ过量和相应的95%置信上限14 x 10〜(-8)光子cm〜(-2)s〜(-1 ),表明它的伽马射线发射至少在几个月的时间尺度上是可变的。在1995年1月24日至1995年2月14日之间还进行了22和375 GHz之间的BL Lacertae观测,这些测量的通量水平类似于该物体的历史平均值。用Whipple天文台10 m伽玛射线望远镜在BL Lacertae上进行的深层曝光显示,在EGRET观测后的9个月内,没有证据表明发射高于350 GeV。从这些观察得出的99.9%置信通量上限为0.53 x 10〜(-11)光子cm〜(-2)s〜(-1),这意味着EGRET之间BL Lacertae的伽马射线发射大大降低和鞭子天文台的能量。这种减少应归因于BL Lacertae固有的过程,因为它离地球足够近,银河间背景IR场不应显着降低Whipple天文望远镜对之敏感的伽马射线通量。

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