IDECAMB: an implementation of interacting dark energy cosmology in CAMB
arXiv:2306.01593 · doi:10.1088/1475-7516/2023/09/046
Abstract
Interacting dark energy (IDE) scenario is a natural and important extension to the standard CDM cosmology. We develop a full numerical routine, called IDECAMB, as a patch to the public Einstein-Boltzmann solver CAMB, to solve the background and perturbation equations of the IDE models. The IDECAMB solver provides a unified interface for the widely studied IDE models by employing a parametrization model with five free functions. By configuring these five functions, one can easily map the coupled quintessence (CQ) and coupled fluid (CF) models into the parametrization. We handle the perturbation evolutions of the CF models with the parametrized post-Friedmann (PPF) approach to avoid the possible large-scale instability. Compared with the previous established PPF approach whose form depends on a specific IDE model, the PPF approach in this work are model-independent, making it easy to use. We constrain a specific CQ model with the IDECAMB package. The fitting results are consistent with those obtained by Planck Collaboration, which confirms the validity of the package.
22 pages, 1 figure; accepted for publication in JCAP
References in corpus (35)
- Dynamics of dark energy
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- Dark Energy and the Accelerating Universe
- The Clustering of the SDSS DR7 Main Galaxy Sample I: A 4 per cent Distance Measure at z=0.15
- Reconstructing Dark Energy
- Can dark energy evolve to the Phantom?
- The Expansion of the Universe is Faster than Expected
- A Parameterized Post-Friedmann Framework for Modified Gravity
- Large-scale instability in interacting dark energy and dark matter fluids
- Dark Energy-Dark Matter Interaction and putative violation of the Equivalence Principle from the Abell Cluster A586
- Dynamics of dark energy with a coupling to dark matter
- Searching for modified growth patterns with tomographic surveys
- Crossing the Phantom Divide with Parameterized Post-Friedmann Dark Energy
- Effects of the interaction between dark energy and dark matter on cosmological parameters
- Testing gravity with CAMB and CosmoMC
- Coupled and Extended Quintessence: theoretical differences and structure formation
- Stability of the curvature perturbation in dark sectors' mutual interacting models
- Testing the interaction between dark energy and dark matter via latest observations
- Parametrized Post-Friedmann Signatures of Acceleration in the CMB
- The Parameterized Post-Friedmannian Framework for Interacting Dark Energy Theories
- The imprint of the interaction between dark sectors in large scale cosmic microwave background anisotropies
- Novel approach towards the large-scale stable Interacting Dark-Energy models and their Astronomical Bounds
- Cosmological constraints on a decomposed Chaplygin gas
- Effects of dark sectors' mutual interaction on the growth of structures
- Parametrized Post-Friedmann Framework for Interacting Dark Energy
- Dark Coupling and Gauge Invariance
- Exploring the full parameter space for an interacting dark energy model with recent observations including redshift-space distortions: Application of the parametrized post-Friedmann approach
- Covariantizing the interaction between dark energy and dark matter
- Scattering of Dark Matter and Dark Energy
- Revisit of the Interaction between Holographic Dark Energy and Dark Matter
- EFTCAMB/EFTCosmoMC: massive neutrinos in dark cosmologies
- Probing the sign-changeable interaction between dark energy and dark matter with current observations
- Probing the interaction between dark energy and dark matter with future fast radio burst observations
- Insights into Dark Energy: Interplay Between Theory and Observation
- Reexploration of interacting holographic dark energy model: Cases of interaction term excluding the Hubble parameter
Cited by in corpus (15)
- Seven hints that early-time new physics alone is not sufficient to solve the Hubble tension
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Constraints on Interacting Dark Energy Models from the DESI Baryon Acoustic Oscillation and DES Supernovae Data
- Prospects for probing the interaction between dark energy and dark matter using gravitational-wave dark sirens with neutron star tidal deformation
- Cosmic sign-reversal: non-parametric reconstruction of interacting dark energy with DESI DR2
- Measuring cosmic curvature with non-CMB observations
- III. Interacting Dark Energy: Summary of Models, Pathologies, and Constraints
- Prospects for weighing neutrinos in interacting dark energy models using joint observations of gravitational waves and -ray bursts
- II. Non-Linear Interacting Dark Energy: Analytical Solutions and Theoretical Pathologies
- I. Linear Interacting Dark Energy: Analytical Solutions and Theoretical Pathologies
- Testing the phenomenological interacting dark energy model with gamma-ray bursts and Pantheon+ type Ia supernovae
- Dark Energy in the DESI Era: A Brief Review of Evidence, Beyond-CDM Interpretations, and Tensions
- What Prevents Resolving the Hubble Tension through Late-Time Expansion Modifications?
- Crunching, Bouncing, and Cyclical Cosmologies from Dark Sector Interactions
- Accelerating scaling solutions from dark matter particle creation