A spectro-temporal view of normal branch oscillations in Cygnus X-2 as seen by NICER and NuSTAR
A spectro-temporal view of normal branch oscillations in Cygnus X-2 as seen by NICER and NuSTAR
We report the spectro-temporal study of the neutron star low mass X-ray binary Cygnus X-2 using NICER and NuSTAR data while the source was in the normal branch (NB). We detect a normal branch oscillation (NBO) feature at ~ 5.41 Hz that appears in the middle portion of the NB branch. We note that the NBO appeared only in the 0.5-3 keV energy range, with maximum strength in the 1-2 keV energy band, but was absent in the 3-10 keV energy band of NuSTAR and NICER data. The energy spectrum of the source exhibits an emission feature at ~ 1 keV, previously identified as the Fe L transition in the outer region of the accretion disk. Upon considering both the Fe L and NBO features, we suggest that the originating location of the Fe L line and the NBOs may coincide and perhaps be due to the same underlying mechanism. Therefore, lags seen in the frequency/energy dependent lag spectra of Cygnus X-2 could be considered to be arising from a region of photoionized material far from the central source. We study the frequency and energy dependent lag spectra of the source, which exhibited a few milliseconds hard lag at the NBO frequency (12-15 ms) and a switch from hard to soft lags at 1 keV. The rms spectrum peaks at 1 keV and the covariance spectrum clearly resembles a thermal spectrum. We discuss the spectro-temporal behavior of the NBO and attempt to constrain its location of origin.
astro-ph.HE
Sudha, Malu
7ac93c27-e1fc-4a41-b4b6-a46230ab7629
Ludlam, Renee M.
07984e04-e9b6-4473-b1ec-95a07311d4fb
Altamirano, Diego
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Cackett, Edward M.
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Hare, Jeremy
869a49a2-a90b-424d-8b91-f972ce38ffb1
26 December 2024
Sudha, Malu
7ac93c27-e1fc-4a41-b4b6-a46230ab7629
Ludlam, Renee M.
07984e04-e9b6-4473-b1ec-95a07311d4fb
Altamirano, Diego
d5ccdb09-0b71-4303-9538-05b467be075b
Cackett, Edward M.
db500756-c971-444b-9677-4ee742b2dac5
Hare, Jeremy
869a49a2-a90b-424d-8b91-f972ce38ffb1
Sudha, Malu, Ludlam, Renee M., Altamirano, Diego, Cackett, Edward M. and Hare, Jeremy
(2024)
A spectro-temporal view of normal branch oscillations in Cygnus X-2 as seen by NICER and NuSTAR.
The Astrophysical Journal, 978 (1), [75].
(doi:10.3847/1538-4357/ad9588).
Abstract
We report the spectro-temporal study of the neutron star low mass X-ray binary Cygnus X-2 using NICER and NuSTAR data while the source was in the normal branch (NB). We detect a normal branch oscillation (NBO) feature at ~ 5.41 Hz that appears in the middle portion of the NB branch. We note that the NBO appeared only in the 0.5-3 keV energy range, with maximum strength in the 1-2 keV energy band, but was absent in the 3-10 keV energy band of NuSTAR and NICER data. The energy spectrum of the source exhibits an emission feature at ~ 1 keV, previously identified as the Fe L transition in the outer region of the accretion disk. Upon considering both the Fe L and NBO features, we suggest that the originating location of the Fe L line and the NBOs may coincide and perhaps be due to the same underlying mechanism. Therefore, lags seen in the frequency/energy dependent lag spectra of Cygnus X-2 could be considered to be arising from a region of photoionized material far from the central source. We study the frequency and energy dependent lag spectra of the source, which exhibited a few milliseconds hard lag at the NBO frequency (12-15 ms) and a switch from hard to soft lags at 1 keV. The rms spectrum peaks at 1 keV and the covariance spectrum clearly resembles a thermal spectrum. We discuss the spectro-temporal behavior of the NBO and attempt to constrain its location of origin.
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2411.12803v1
- Author's Original
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Sudha_2025_ApJ_978_75
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Accepted/In Press date: 19 November 2024
Published date: 26 December 2024
Keywords:
astro-ph.HE
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Local EPrints ID: 498054
URI: http://eprints.soton.ac.uk/id/eprint/498054
ISSN: 0004-637X
PURE UUID: 81783333-2540-4fc6-832c-d5971006222e
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Date deposited: 06 Feb 2025 18:16
Last modified: 22 Aug 2025 02:10
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Author:
Malu Sudha
Author:
Renee M. Ludlam
Author:
Edward M. Cackett
Author:
Jeremy Hare
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