Multifractality Signatures in Lensed Quasars
arXiv:2411.02076 · doi:10.1093/mnras/stae2490
Abstract
Variations in scaling behavior in the flux and emissions of gravitational lensed quasars can provide valuable information about the dynamics within the sources and their cosmological evolution with time. Here, we study the multifractal behavior of the light curves of 14 lensed quasars with multiple images in the band, with redshift ranging from 0.657 to 2.730, in the search for potential differences in nonlinearity between the signals of the quasar multiple images. Among these lensed systems, nine present two images, two present three images, and three present four images. To this end, we apply the wavelet transform-based multifractal analysis formalism called Wavelet Transform Modulus Maxima (WTMM). We identify strong multifractal signatures in the light curves of the images of all analyzed lensed quasar systems, independently of the number of images, with a significant difference between the degree of multifractality of all the images and combinations. We have also searched for a possible connection between the degree of multifractality and the characteristic parameters related to the quasar source and the lensing galaxy. These parameters include the Einstein ring radius and the accretion disk size and the characteristic timescales related to microlensing variability. The analysis reveals some apparent trends, pointing to a decrease in the degree of multifractality with the increase of the quasar's source size and timescale. Using a larger sample and following a similar approach, the present study confirms a previous finding for the quasar Q0957+561.
12 pages, 7 figures, 3 tables, accepted for publication in MNRAS
References in corpus (38)
- Multifractal detrended fluctuation analysis of nonstationary time series
- The VizieR database of Astronomical Catalogues
- Detrending moving average algorithm for multifractals
- The Quasar Accretion Disk Size -- Black Hole Mass Relation
- The Quasar Accretion Disk Size - Black Hole Mass Relation
- Comparison of detrending methods for fluctuation analysis
- Comparing the performance of FA, DFA and DMA using different synthetic long-range correlated time series
- Nonlinearity and Multifractality of Climate Change in the Past 420,000 Years
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses XIII: Time delays and 9-yr optical monitoring of the lensed quasar RX J1131-1231
- The Microlensing Properties of a Sample of 87 Lensed Quasars
- Microlensing of the broad line region in 17 lensed quasars
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses XI. Techniques for time delay measurement in presence of microlensing
- The Influence of Gravitational Microlensing on the Broad Emission Lines of Quasars
- COSMOGRAIL XIX: Time delays in 18 strongly lensed quasars from 15 years of optical monitoring
- Microlensing of Quasar Broad Emission Lines: Constraints on Broad Line Region Size
- The cluster environments of powerful radio-loud and radio-quiet AGN
- The Average Size and Temperature Profile of Quasar Accretion Disks
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses XV. Assessing the achievability and precision of time-delay measurements
- Optical Variability of Quasars with 20-Year Photometric Light Curves
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses XII. Time delays of the doubly lensed quasars SDSS J1206+4332 and HS 2209+1914
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses XIV. Time delay of the doubly lensed quasar SDSS J1001+5027
- The signature of primordial black holes in the dark matter halos of galaxies
- COSMOGRAIL XVIII: time delays of the quadruply lensed quasar WFI2033-4723
- Quasar Microlensing Variability Studies Favor Shallow Accretion Disk Temperature Profiles
- Microlensing of the X-ray, UV and optical emission regions of quasars: Simulations of the time-scales and amplitude variations of microlensing events
- SDSS J1004+4112: the case for a galaxy cluster dominated by primordial black holes
- The cluster environments of radio-loud quasars at 0.6 < z < 1.1
- New evidence for a cosmological distribution of stellar mass primordial black holes
- Constraining the geometry and kinematics of the quasar broad emission line region using gravitational microlensing. I. Models and simulations
- Multifractality Signatures in Quasars Time Series. I. 3C 273
- A Gravitationally Lensed Quasar Discovered in OGLE
- On time dilation in quasar light curves
- Molecular gas kinematics in the nuclear region of nearby Seyfert galaxies with ALMA
- Revealing the nonlinear behaviour of the lensed quasar Q0957+561
- Spectroscopy and polarimetry of the gravitationally lensed quasar Q0957+561
- New constraints on quasar broad absorption and emission line regions from gravitational microlensing
- Cosmological evolution of quasar radio emission in the view of multifractality
- A novel approach to study the variability of NGC 5548