论文标题

活跃阶段期间定期重复器FRB 180916的伽马射线和X射线观察

Gamma-Ray and X-Ray Observations of the Periodic-Repeater FRB 180916 During Active Phases

论文作者

Tavani, M., Verrecchia, F., Casentini, C., Perri, M., Ursi, A., Pacciani, L., Pittori, C., Bulgarelli, A., Piano, G., Pilia, M., Bernardi, G., Addis, A., Antonelli, L. A., Argan, A., Baroncelli, L., Caraveo, P., Cattaneo, P. W., Chen, A., Costa, E., Di Persio, G., Donnarumma, I., Evangelista, Y., Feroci, M., Ferrari, A., Fioretti, V., Lazzarotto, F., Longo, F., Morselli, A., Paoletti, F., Parmiggiani, N., Trois, A., Vercellone, S., Naldi, G., Pupillo, G., Bianchi, G., Puccetti, S.

论文摘要

FRB 180916是150 MPC距离的最吸引人的来源,能够以周期性的16.35天时间模式产生重复的快速无线电爆发。我们报告了Agile and Swift获得的FRB 180916的X射线和$γ$ -Ray的观察结果。我们专注于主动无线电爆发的5天时间间隔,并在2月3日获得的现场结果; 2月25日; 3月5日至10日; 3月22日至28日,2020年,在涉及高能和无线电观察的多波长运动中。我们还搜索了所有已知的FRB 180916和X射线和X射线和MEV事件之间可检测到的敏捷性的毫秒时刻表的时间巧合。我们没有在小时/天/周的时间尺度上检测到任何同时发生的事件或任何扩展的X射线和$γ$ -Ray的排放。 Our cumulative X-ray (0.3-10 keV) flux upper limit of $5 \times\,10^{-14} \rm \, erg \, cm^{-2} s^{-1}$ (obtained during 5-day active intervals) translates into an isotropic luminosity upper limit of $L_{X,UL} \sim 1.5 \times\, 10^{41} \ rm erg \,s^{ - 1} $。在数年的时间尺度上,观测值高于100 MEV,为平均发光度上限一个数量级。这些结果为SO-FAR提供了对FRB 180916的高能排放的最严格限制,并限制了磁能的耗散,从类似磁力的RADIUS $ R_M $,内部磁场$ b_m $和耗散时间计算$τ_d$满足关系$ r_ $ r_ {m,6}^3 b_}^2 b _^2^2^2^2^2 τ_{d,8}^{-1} \lesssim 1$, where $R_{m,6}$ is $R_m$ in units of $10^6$ cm, $B_{m,16}$ is $B_m$ in units of $10^{16}$ G, and $τ_{d,8}$ in units of $10^8$ s.

FRB 180916 is a most intriguing source at 150 Mpc distance capable of producing repeating fast radio bursts with a periodic 16.35 day temporal pattern. We report on the X-ray and $γ$-ray observations of FRB 180916 obtained by AGILE and Swift. We focused on the recurrent 5-day time intervals of active radio bursting and present results obtained on Feb. 3 - 8; Feb. 25; Mar. 5 - 10; Mar. 22 - 28, 2020 during a multiwavelength campaign involving high-energy and radio observations. We also searched for temporal coincidences at millisecond timescales between all known radio bursts of FRB 180916 and X-ray and MeV events detectable by AGILE. We do not detect any simultaneous event or any extended X-ray and $γ$-ray emission on timescales of hours/days/weeks. Our cumulative X-ray (0.3-10 keV) flux upper limit of $5 \times\,10^{-14} \rm \, erg \, cm^{-2} s^{-1}$ (obtained during 5-day active intervals) translates into an isotropic luminosity upper limit of $L_{X,UL} \sim 1.5 \times\, 10^{41} \rm erg \, s^{-1}$. Observations above 100 MeV over a many-year timescale provide an average luminosity upper limit one order of magnitude larger. These results provide the so-far most stringent limits on high-energy emission from FRB 180916 and constrain the dissipation of magnetic energy from a magnetar-like source of radius $R_m$, internal magnetic field $B_m$ and dissipation timescale $τ_d$ to satisfy the relation $R_{m,6}^3 B_{m,16}^2 τ_{d,8}^{-1} \lesssim 1$, where $R_{m,6}$ is $R_m$ in units of $10^6$ cm, $B_{m,16}$ is $B_m$ in units of $10^{16}$ G, and $τ_{d,8}$ in units of $10^8$ s.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源