Induced gravitational waves from flipped SU(5) superstring theory at nHz

被引:21
作者
Basilakos, Spyros [1 ,2 ,3 ]
Nanopoulos, Dimitri, V [4 ,5 ,6 ]
Papanikolaou, Theodoros [1 ,7 ,8 ]
Saridakis, Emmanuel N. [1 ,9 ]
Tzerefosa, Charalampos [10 ]
机构
[1] Natl Observ Athens, Lofos Nymfon 11852, Athens, Greece
[2] Acad Athens, Res Ctr Astron & Appl Math, Soranou Efesiou 4, Athens 11527, Greece
[3] European Univ Cyprus, Sch Sci, Dept Hlth Sci, Nicosia, Cyprus
[4] Texas A&M Univ, George P & Cynthia W Mitchell Inst Fundamental Phy, College Stn, TX 77843 USA
[5] Houston Adv Res Ctr HARC, Astroparticle Phys Grp, Mitchell Campus, The Woodlands, TX 77381 USA
[6] Acad Athens, Div Nat Sci, GR-10679 Athens, Greece
[7] Scuola Super Meridionale, Largo S Marcellino 10, I-80138 Naples, Italy
[8] Ist Nazl Fis Nucleare INFN, Sez Napoli, Via Cinthia 21, I-80126 Naples, Italy
[9] Univ Sci & Technol China, Dept Astron, CAS Key Lab Res Galaxies & Cosmol, Hefei 230026, Anhui, Peoples R China
[10] Natl & Kapodistrian Univ Athens, Dept Phys, Zografou Campus, GR-15773 Athens, Greece
关键词
SYMMETRY-BREAKING; TERMS; DUST;
D O I
10.1016/j.physletb.2024.138446
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The no-scale flipped SU(5) superstring framework constitutes a very promising paradigm for physics below the Planck scale providing us with a very rich cosmological phenomenology in accordance with observations. In particular, it can accommodate Starobinsky-like inflation, followed by a reheating phase, which is driven by a light "flaton" field, and during which the GUT phase transition occurs. In this Letter, we extract for the first time a gravitational-wave (GW) signal which naturally arises in the context of the flipped SU(5) cosmological phenomenology and is related to the existence of an early matter era (eMD) driven by the flaton field. Specifically, we study GWs non-linearly induced by inflationary perturbations and which are abundantly produced during a sudden transition from the flaton-driven eMD era to the late-time radiation-dominated era. Remarkably, we find a GW signal with a characteristic peak frequency f(GW,peak) depending only on the string slope alpha ' and reading as f(GW,peak) proportional to 10(-9)(alpha '/alpha '(*))(4) Hz, where alpha '(*) is the fiducial string slope being related directly to the reduced Planck scale M-Pl as alpha '(*) = 8/M-Pl(2). Interestingly enough, f(GW,peak) lies within the nHz frequency range; hence rendering this primordial GW signal potentially detectable by SKA, NANOGrav and PTA probes at their very low frequency region of their detection bands.
引用
收藏
页数:6
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