论文标题

从“天空的PI”项目中的核者和其他重型物体的通量限制

Limits on the flux of nuclearites and other heavy compact objects from the "Pi of the Sky" project

论文作者

Piotrowski, Lech Wiktor, Małek, Katarzyna, Mankiewicz, Lech, Sokołowski, Marcin, Wrochna, Grzegorz, Zadrożny, Adam, Żarnecki, Aleksander Filip

论文摘要

许多理论预测存在非常沉重的物体的存在,从大小上讲,它们属于核物理或原子物理学的领域,但就群众而言,可以扩展到宏观世界,到达千克世界,到达公斤,吨或更多。如果存在,它们很可能会以高速到达我们的星球并穿越大气。由于它们的质量高度比和巨大的能量,在许多情况下,它们会以声音和地震波,蚀刻或透明介​​质中的光线形式留下一条痕迹。在这里,我们在“天空”实验中拍摄的天空视觉照片中搜索了此类物体的结果,该实验在各向同性的所谓的核者上的最严格限制范围涉及$ 5.4 \ cdot10^{ - 20}} $ 5.4 \ cdot10^{ - 20} $和$ 2.2 \ cdot10^{ - \ cdot10^{ - \ cdot11}} { - \ Mathrm {s}^{ - 1} \ Mathrm {sr}^{ - 1} $ 100 g至100 kg之间的质量。此外,我们在星系中静态“海”的假设下建立了一个定向通量极限,该核者在$ 1.5 \ cdot10^{ - 18} $和$ 2.1 \ cdot10^{ - 19} \ \ \ \ \ \ \ \ \ \ mathrm {cm}^{cm}^{ - 2} { - 2} \ Mathrm {s sate sate sate and and and and sate and}提出的极限的一般性质应允许人们限制许多特定模型,以预测重型物体的存在以及粒子物理和天体物理过程,从而导致其创造及其来源。

Many theories predict the existence of very heavy compact objects, that in terms of sizes would belong to the realms of nuclear or atomic physics, but in terms of masses could extend to the macroscopic world, reaching kilograms, tonnes or more. If they exist, it is likely that they reach our planet with high speeds and cross the atmosphere. Due to their high mass to size ratio and huge energy, in many cases, they would leave behind a trail in the form of sound and seismic waves, etches, or light in transparent media. Here we show results of a search for such objects in visual photographs of the sky taken by the "Pi of the Sky" experiment, illustrated with the most stringent limits on the isotropic flux of incoming so-called nuclearites, spanning between $5.4\cdot10^{-20}$ and $2.2\cdot10^{-21}\ \mathrm{cm}^{-2} \mathrm{s}^{-1} \mathrm{sr}^{-1}$ for masses between 100 g and 100 kg. In addition we establish a directional flux limit under an assumption of static "sea" of nuclearites in the Galaxy, which spans between $1.5\cdot10^{-18}$ and $2.1\cdot10^{-19}\ \mathrm{cm}^{-2} \mathrm{s}^{-1}$ in the same mass range. The general nature of the limits presented should allow one to constrain many specific models predicting the existence of heavy compact objects and both particle physics and astrophysical processes leading to their creation, and their sources.

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