Effects of Coronal Mass Ejection on PSR J1022+1001 and Possible Mode Change of PSR J2145-0750 in the InPTA DR2
arXiv:2510.26594 · doi:10.1016/j.jheap.2025.100547
Abstract
The Indian Pulsar Timing Array (InPTA) has recently published its second data release (DR2), comprising the timing analysis of seven years of data on 27 millisecond pulsars (MSPs), observed simultaneously in the 300-500 MHz (band 3) and 1260-1460 MHz (band 5), using the upgraded Giant Metrewave Radio Telescope (uGMRT). The low-frequency data, particularly in band 3, is highly sensitive to propagation effects such as dispersion measure (DM) fluctuations, which can be imprints of some astrophysical phenomena (scientific outliers). Here, we analyze the two outliers of possible astrophysical origin coming from the band 3 DM time series of two pulsars: PSR J1022+1001, with an ecliptic latitude of -0.06 degree, and PSR J2145-0750, one of the brightest MSPs, with multi-component profile morphology. Our study reveals compelling evidence for a coronal mass ejection (CME) event traced in the data of PSR J1022+1001, and reports evidence for a potential mode-changing event in PSR J2145-0750. By contrasting these two cases, we show that DM fluctuations due to CME interacions and intrinsic mode-changing events produce distinct observational signatures, enabling a physically informed classification of scientific outliers in PTA datasets. Extending the analyses presented here to the full sample of InPTA-DR2 pulsars is expected to reveal additional CME events, and possible mode-changing events. Such detections will not only improve our understanding of solar and pulsar magnetospheric plasma interactions but will also enable more accurate modelling of DM variations, leading to improved pulsar timing solutions, which are crucial for high-precision Pulsar Timing Array (PTA) science.
14 pages, 10 figures, 1 table
References in corpus (24)
- Shapiro delay measurement of a two solar mass neutron star
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- TEMPO2, a new pulsar timing package. I: Overview
- Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I
- Tempo2, a new pulsar timing package. II: The timing model and precision estimates
- Switched magnetospheric regulation of pulsar spin-down
- The second data release from the European Pulsar Timing Array I. The dataset and timing analysis
- Identifying and mitigating noise sources in precision pulsar timing data sets
- The MeerKAT Pulsar Timing Array: The first search for gravitational waves with the MeerKAT radio telescope
- The Indian Pulsar Timing Array: First data release
- The impact of Solar wind variability on pulsar timing
- Solar Wind Drag and the Kinematics of Interplanetary Coronal Mass Ejections
- Evidence for profile changes in PSR J1713+0747 using the uGMRT
- A Test of Gravity with Pulsar Timing Arrays
- Nanohertz Gravitational Wave Astronomy during the SKA Era: An InPTA perspective
- Long-term scintillation studies of EPTA pulsars. I. Observations and basic results
- High Precision Measurements of Interstellar Dispersion Measure with the upgraded GMRT
- Status Report on Global Pulsar-Timing-Array Efforts to Detect Gravitational Waves
- Noise analysis of the Indian Pulsar Timing Array data release I
- The Chinese Pulsar Timing Array data release I. Single pulsar noise analysis
- The Indian Pulsar Timing Array Data Release 2: I. Dataset and Timing Analysis
- Ultra-Wideband Polarimetry of the April 2021 Profile Change Event in PSR J1713+0747
- The ORT and the uGMRT Pulsar Monitoring Program : Pulsar Timing Irregularities & the Gaussian Process Realization
- The impact of outliers on pulsar timing arrays