Did Dark Matter Annihilations Reionize The Universe? Dan Hooper Fermilab Theoretical Astrophysics Group FNAL Particle Astrophysics Seminar June 1, 2009.

Slides:



Advertisements
Similar presentations
ICECUBE & Limits on neutrino emission from gamma-ray bursts IceCube collaboration Journal Club talk Alex Fry.
Advertisements

Combined Energy Spectra of Flux and Anisotropy Identifying Anisotropic Source Populations of Gamma-rays or Neutrinos Sheldon Campbell The Ohio State University.
A Scientific History of the Universe. How do we predict the conditions of the early universe? What are the different eras in the early universe? What.
What mass are the smallest protohalos in thermal WIMP dark-matter models? Kris Sigurdson Institute for Advanced Study Space Telescope Science Institute.
Implication of recent cosmic ray data Qiang Yuan Institute of High Energy Physics Collaborated with Xiaojun Bi, Hong Li, Jie Liu, Bing Zhang & Xinmin Zhang.
The Big Bang Or… The Standard Model. Precepts of the standard model The laws of Physics are the same throughout the Universe. The Universe is expanding.
Dark Matter Explanation For e^\pm Excesses In Cosmic Ray Xiao-Gang He CHEP, PKU and Physics, NTU.
Searching for Dark Matter
“Dark Matter in Modern Cosmology” Sergio Colafrancesco.
Significant effects of second KK particles on LKP dark matter physics
Annihilating Dark Matter Nicole Bell The University of Melbourne with John Beacom (Ohio State) Gianfranco Bertone (Paris, Inst. Astrophys.) and Gregory.
Testing astrophysical models for the PAMELA positron excess with cosmic ray nuclei Philipp Mertsch Rudolf Peierls Centre for Theoretical Physics, University.
1 Search for Dark Matter Galactic Satellites with Fermi-LAT Ping Wang KIPAC-SLAC, Stanford University Representing the Fermi LAT Collaboration.
CAN WE UNDERSTAND THE PAMELA POSITRON EXCESS AS WINOS? Gordy Kane January 2009 Ann Arbor arXiv , see also Phill Grajek, Aaron Pierce,
SLAC, June 23 rd Dark Matter in Galactic Gamma Rays Marcus Ziegler Santa Cruz Institute for Particle Physics Gamma-ray Large Area Space Telescope.
Constraints on large DM annihilation cross sections from the early Universe Fabio Iocco Institut de Physique Theorique, CEA/Saclay Institut d’Astrophysique.
The positron excess and supersymmetric dark matter Joakim Edsjö Stockholm University
CMB constraints on WIMP annihilation: energy absorption during recombination Tracy Slatyer – Harvard University TeV Particle Astrophysics SLAC, 14 July.
Primordial BHs. 2 Main reviews and articles astro-ph/ Primordial Black Holes - Recent Developments astro-ph/ Gamma Rays from Primordial.
Constraining DM scenarios with CMB Fabio Iocco Institut d’Astrophysique de Paris Institut de Physique Theorique, CEA/Saclay In collaboration with: G. Bertone,
Significant enhancement of Bino-like dark matter annihilation cross section due to CP violation Yoshio Sato (Saitama University) Collaborated with Shigeki.
Antideuteron Searches for Dark Matter LR W/ Yanou Cui John Mason.
The Big Bang Or… The Standard Model. Precepts of the standard model The laws of Physics are the same throughout the Universe. The Universe is expanding.
Quintessino model and neutralino annihilation to diffuse gamma rays X.J. Bi (IHEP)
Indirect Signals of Particle Dark Matter
The Big Bang Astrophysics Lesson 18. Learning Objectives To know:-  What is the big bang theory  What is the evidence supporting it including:-  Cosmological.
Sayfa 1 EP228 Particle Physics Department of Engineering Physics University of Gaziantep Dec 2014 Topic 5 Cosmic Connection Course web page
The Dark Side of the Universe What is dark matter? Who cares?
The Cosmic Microwave Background Lecture 2 Elena Pierpaoli.
Cosmology and Dark Matter I: Einstein & the Big Bang by Jerry Sellwood.
Aldo Morselli INFN, Sezione di Roma 2 & Università di Roma Tor Vergata 1 Report from Italy A. Morselli, A. Lionetto, A. Cesarini, F.Fucito, P.Ullio* INFN,
Singlet Dark Matter, Type II Seesaw and Cosmic Ray Signals Nobuchika Okada Miami Fort Fauderdale, Dec , 2009 University of Alabama, Tuscaloosa.
Overview of indirect dark matter detection Jae Ho HEO Theoretical High Energy group Yonsei University 2012 Jindo Workshop, Sep
TexPoint fonts used in EMF. Read the TexPoint manual before you delete this box.: AAA A A A A A.
Dark Matter Particle Physics View Dmitri Kazakov JINR/ITEP Outline DM candidates Direct DM Search Indirect DM Search Possible Manifestations DM Profile.
DARK MATTER CANDIDATES Cody Carr, Minh Nguyen December 9 th, 2014.
The Origin and Acceleration of Cosmic Rays in Clusters of Galaxies HWANG, Chorng-Yuan 黃崇源 Graduate Institute of Astronomy NCU Taiwan.
Space-based Gamma-ray Astronomy Liz Hays (NASA Goddard Space Flight Center)
The Big Bang: what happened, and when did it happen?
Summary of indirect detection of neutralino dark matter Joakim Edsjö Stockholm University
Reionizing the Universe with Dark Matter : constraints on self-annihilation cross sections Fabio Iocco Marie Curie fellow at Institut d’Astrophysique de.
中国科学院高能物理研究所 INSTITUTE OF HIGH ENERGY PHYSICS Constraints on the cross-section of dark matter annihilation from Fermi observation of M31 Zhengwei Li Payload.
The Beginning of Time: Evidence for the Big Bang & the Theory of Inflation.
KIAA-WAP, Peking U 2015/9/28 Implications on CRs and DM from the AMS-02 results Xiao-Jun Bi ( 毕效军 ) Center for Particle and Astrophysics IHEP, Beijing.
Collider searchIndirect Detection Direct Detection.
MARCH 11YPM 2015  ray from Galactic Center Tanmoy Mondal SRF PRL Dark Matter ?
Indirect Detection Of Dark Matter
Yu-Feng Zhou KITPC/ITP-CAS
Cosmic Ray Excesses From Multi-Component Dark Matter Da Huang Physics Department, Fo Guang Shan Fo Guang Shan PRD89, (2014) [arXiv:
Big Bang f(HI) ~ 0 f(HI) ~ 1 f(HI) ~ History of Baryons (mostly hydrogen) Redshift Recombination Reionization z = 1000 (0.4Myr) z = 0 (13.6Gyr) z.
Type II Seesaw Portal and PAMELA/Fermi LAT Signals Toshifumi Yamada Sokendai, KEK In collaboration with Ilia Gogoladze, Qaisar Shafi (Univ. of Delaware)
The Dark Age and Cosmology Xuelei Chen ( 陈学雷 ) National Astronomical Observarories of China The 2nd Sino-French Workshop on the Dark Universe, Aug 31st.
Keegan Stoner Columbia High School. dark matter Obeying Inverse Square Law Outer stars orbit too fast what we should seewhat we actually see.
DARK MATTER Fisica delle Astroparticelle Piergiorgio Picozza a.a
Recent developments in Dark Matter Malcolm Fairbairn.
Topics on Dark Matter Annihilation
CR Backgrounds for DM Searches
Indirect dark matter search with the balloon-borne PEBS detector
An interesting candidate?
Dark Matter in Galactic Gamma Rays
Dark Matter Subhalos in the Fermi First Source Catalog
Can dark matter annihilation account for the cosmic e+- excesses?
Implications of new physics from cosmic e+- excesses
Primordial BHs.
DARK MATTER AND INDIRECT DETECTION IN COSMIC RAYS
The Hunt For Dark Matter …Continues
Progress in the Indirect Detection of Dark Matter
Leptophilic Dark Matter from ATIC and Pamela
Dark Matter Explanation in Singlet Extension of MSSM
Presentation transcript:

Did Dark Matter Annihilations Reionize The Universe? Dan Hooper Fermilab Theoretical Astrophysics Group FNAL Particle Astrophysics Seminar June 1, 2009 (Based on recent work with Alexander Belikov, arXiv: )

The Ionization History Of Our Universe The atoms in our universe have undergone two major phase transitions Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

The Ionization History Of Our Universe 1)370,000 years after the big bang, electrons and protons combine to form neutral atoms, and release the cosmic microwave background Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

The Ionization History Of Our Universe 1)370,000 years after the big bang, electrons and protons combine to form neutral atoms, and release the cosmic microwave background 2)Between z~6-20, our universe’s gas once again became ionized Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Empirical Handles On Reionization 1) The Gunn-Peterson Trough  Neutral hydrogen absorbs light very efficiently via the Lyman-alpha transition  The lack of strong Lyman-alpha absorption in the spectra of very distant quasars demonstrates that the vast majority of hydrogen since z~6 was ionized 2) CMB Anisotropies  Thompson scattering of the CMB photons with free electrons can produce observable anisotropies  WMAP has reported a Thompson optical depth of the universe of  =0.087  (about 0.04 of which corresponds to full ionization at z<6) Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

What Caused Reionization? Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? Redshifts of z~6-20 correspond to ~200 million years to ~1 billion years after the Big Bang - little in the way of sources of ionizing radiation Time (Gyr) Redshift

What Caused Reionization? Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? Two leading candidates:  Early Stars  Quasars Conventional* View: At z > 6, UV radiation from star forming galaxies dominated reionization; at z < 4, non-thermal emission from quasars became significant, enabling the double ionization of helium (Madau, Haardt, Rees, 1999) * Not to be confused with “Consensus”

What Caused Reionization? Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?  The convention scenario, however, does not automatically lead to the full reionization of the universe by z~6 Volonteri and Gnedin,

What Caused Reionization? Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?  The convention scenario, however, does not automatically lead to the full reionization of the universe by z~6  This can be accommodated by reasonable (1  ) shifts in cosmological parameters (  8,  s ) Volonteri and Gnedin,

Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? Current Status Dark Matter As An Alternative Source Of Ionizing Radiation?

 Over the first billion years, dark matter had begun to form clumps and annihilate efficiently  Dark matter annihilation products include gamma rays, which can scatter with electrons, causing gas to become ionized  If one in ~10 9 dark matter particles annihilate during this era, the energy released would be sufficient to completely reionize the universe Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?   W+W+ W-W- e+e+ q q 00   e+e+  Dark Matter As An Alternative Source Of Ionizing Radiation?

 N-Body simulations indicate that the first (and smallest) clumps of dark matter formed by z~60  Mergers of smaller halos gradually lead to the structures observed today  The halo mass function depends somewhat on the cosmological parameters, but otherwise can be reliably calculated Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? Dark Matter Halos At z~6-60 Reed et al., MNRAS, astro-ph/

Ionizing Radiation From WIMP Annihilations Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? 1.WIMP Annihilation Typical final states include heavy fermions, gauge or Higgs bosons   W+W+ W-W-

Ionizing Radiation From WIMP Annihilations Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? 1.WIMP Annihilation Typical final states include heavy fermions, gauge or Higgs bosons 2.Fragmentation/Decay Annihilation products decay and/or fragment into combinations of electrons, protons, deuterium, neutrinos and gamma-rays   W+W+ W-W- e+e+ q q p 00  

Ionizing Radiation From WIMP Annihilations Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? 1.WIMP Annihilation Typical final states include heavy fermions, gauge or Higgs bosons 2.Fragmentation/Decay Annihilation products decay and/or fragment into combinations of electrons, protons, deuterium, neutrinos and gamma-rays 3.Inverse Compton Scattering Relativistic (~GeV) electrons up-scatter CMB photons to ~MeV energies   W+W+ W-W- e+e+ q q p 00   e+e+ 

Ionizing Radiation From WIMP Annihilations Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? 1.WIMP Annihilation Typical final states include heavy fermions, gauge or Higgs bosons 2.Fragmentation/Decay Annihilation products decay and/or fragment into combinations of electrons, protons, deuterium, neutrinos and gamma-rays 3.Inverse Compton Scattering Relativistic (~GeV) electrons up-scatter CMB photons to ~MeV energies 4.Ionization, Heating and Excitation of Gas Some of these photons go on to scatter with electrons (~1/3 of energy to each)   W+W+ W-W- e+e+ q q p 00   e+e+ 

The Relative Importance of Inverse Compton Photons Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?  Most dark matter annihilation channels lead to a similar quantity of energy being deposited in photons and electrons  The electrons eventually transfer their energy into a large number of lower energy photons via inverse Compton scattering with the CMB  As the photon-electron cross section is much larger at lower energies, a much larger fraction of the IC photons’ energy goes into ionizing atoms Prompt Photons Electrons IC Photons

Case Example: A Typical SUSY Neutralino  Consider a typical ~100 GeV neutralino which annihilates to W + W - with a cross section of  v ~ 3 x cm 3 /s  For such a WIMP, annihilations in the first billion years of our universe’s history lead to only ~1% of the atoms being reionized, and only mild heating Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Efficiently Ionizing Dark Matter Candidates To provide the majority of the radiation that reionized the universe, we need another kind of WIMP For example, we could consider WIMPs with:  A considerably larger annihilation cross section  Dominant annihilation channels to electrons (more inverse Compton) Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

But what possible motivation could we have for such a dark matter candidate?

Pamela’s Cosmic Ray Positron Measurement Pamela Collaboration, arXiv: Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Pamela’s Cosmic Ray Positron Measurement Pamela Collaboration, arXiv: First glance: -Is this all screwed up? Charge-dependent solar modulation important below 5-10 GeV! (Pamela’s sub-10 GeV positrons appear as they should!) Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Pamela’s Cosmic Ray Positron Measurement Pamela Collaboration, arXiv: First glance: -Is this all screwed up? Charge-dependent solar modulation important below 5-10 GeV! (Pamela’s sub-10 GeV positrons appear as they should!) Astrophysical expectation (secondary production) Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Pamela’s Cosmic Ray Positron Measurement Pamela Collaboration, arXiv: First glance: -Is this all screwed up? Charge-dependent solar modulation important below 5-10 GeV! (Pamela’s sub-10 GeV positrons appear as they should!) Astrophysical expectation (secondary production) Rapid climb above 10 GeV indicates the presence of a primary source of cosmic ray positrons! Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

The Cosmic Ray Electron Spectrum  In a series of balloon flights, ATIC measured an excess of cosmic ray electrons between 300 and 800 GeV (Nature, Nov. 21, 2008)  New results from the Fermi Gamma Ray Space Telescope (and HESS) measure a less pronounced feature, but still an excess Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Dark Matter as the Source of the Pamela and/or Fermi Signals  The positrons/electrons observed by Pamela and Fermi could be generated by dark matter annihilations,… but to do so would require the dark matter to have some rather special properties Cholis, Goodenough, Hooper, Simet, Weiner arXiv: Bergstrom, Edsjo, Zaharijas, arXiv: Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Dark Matter as the Source of the Pamela and Fermi Signals  To produce the observed positron excess, dark Matter annihilations must proceed mostly to charged leptons Cholis, Goodenough, Hooper, Simet and Weiner, arXiv: Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Dark Matter as the Source of the Pamela and/or Fermi Signals Bergstrom, Edsjo, Zaharijas, 2009  To produce the observed positron excess, dark Matter annihilations must proceed mostly to charged leptons  The Fermi spectrum (if explained by dark matter), requires TeV-scale WIMPs that annihilate to  +  - Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Dark Matter as the Source of the Pamela and/or Fermi Signals  To produce the observed positron excess, dark Matter annihilations must proceed mostly to charged leptons  The Fermi spectrum (if explained by dark matter), requires TeV-scale WIMPs that annihilate to  +  -  Annihilations to leptons also enable the stringent constraints from antiproton, gamma ray and synchrotron measurements to be evaded Pamela Collaboration, arXiv: Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Dark Matter as the Source of the Pamela and/or Fermi Signals  The PAMELA/Fermi signals also require very large annihilations rates compared to that expected from a typical thermal relic Cholis, Goodenough, Hooper, Simet and Weiner, 2008; Bergstrom, Edsjo, Zaharijas, 2009 Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Dark Matter as the Source of the Pamela and Fermi Signals One possible solution:  Annihilation rate dramatically increased by non-perturbative effects known as the “Sommerfeld Enhancement” -Very important for m  <<m X and v X <<c (such as in the halo, where v x /c~10 -3 ) X X  Arkani-Hamed, Finkbeiner, Slatyer, Weiner, arXiv: ; Cirelli and Strumia, arXiv:  X X    Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Dark Matter as the Source of the Pamela and Fermi Signals One possible solution:  Annihilation rate dramatically increased by non-perturbative effects known as the “Sommerfeld Enhancement” -Very important for m  <<m X and v X <<c (such as in the halo, where v x /c~10 -3 )  If m  < 2m  final products will be largely muons, electrons X X  Arkani-Hamed, Finkbeiner, Slatyer, Weiner, arXiv: ; Cirelli and Strumia, arXiv:  X X     -, e -  +, e +  -, e -  +, e + Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Dark Matter as the Source of the Pamela and Fermi Signals A Supersymmetric Realization:  In the MSSM extended by a higgs singlet, the LSP can be a singlino, coupled to light singlet-like scalar (h) and psedoscalar (a) higgs bosons  Can provide the PAMELA/FGST signals, including large annihilation rate via a higgs induced Sommerfeld effect Hooper and T. Tait, In preparation   a h h  -, e - a a  +, e +  -, e -  +, e +  -, e -  +, e + Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

What Effect Would Such A WIMP Have On Reionization?  Recall that a typical ~100 GeV WIMP which annihilates to W + W - with a cross section of  v ~ 3 x cm 3 /s only reionizes ~1% of atoms by z=6 Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

What Effect Would Such A WIMP Have On Reionization?  Recall that a typical ~100 GeV WIMP which annihilates to W + W - with a cross section of  v ~ 3 x cm 3 /s only reionizes ~1% of atoms by z=6  If we boost the cross section by a factor of ~10 2 (a non-thermal wino-like neutralino, for example), we find that dark matter can be the dominant source of reionization Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

What Effect Would Such A WIMP Have On Reionization?  WIMPs annihilating directly to electrons are far more efficient in reionizing gas (by a factor of ~10) XX  W + W - XX  e + e - Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Did Dark Matter Reionize Our Universe? Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? Belikov and Hooper, arXiv: Observed degree of reionization (z>6) (WMAP optical depth)

Did Dark Matter Reionize Our Universe? Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? Cross section range required for PAMELA Observed degree of reionization (z>6) (WMAP optical depth) Belikov and Hooper, arXiv:

Did Dark Matter Reionize Our Universe? Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? PAMELA Only PAMELA+ ATIC Belikov and Hooper, arXiv:

Did Dark Matter Reionize Our Universe? Dan Hooper - Did Dark Matter Annihilations Reionize The Universe? PAMELA Only If annihilating dark matter is responsible for the PAMELA (or ATIC) signals, then dark matter is also predicted to have played a dominant role in reionizing the universe! PAMELA+ ATIC Belikov and Hooper, arXiv:

 Cosmological parameters (  8,  s ) impacting the halo mass function  Clumping of gas (impact on recombination rate)  Halo profile/concentration (Modest) Uncertainties Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

 How does the fraction of doubly ionized helium evolve with redshift?  A closer look at gas heating - both modeling and constraints  From the WMAP optical depth measurement, what constraints can be placed on the dark matter annihilation cross section/channels? Open Questions/Areas For Future Inquiry Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Future Experiments!  Planck will considerably refine the optical depth measurements, perhaps even providing information in redshift bins Open Questions/Areas For Future Inquiry Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Future Experiments!  The Fermi Gamma Ray Space Telescope will be studying the extragalactic diffuse gamma ray background - if dark matter reionized the universe, it will also have generated a very bright background Open Questions/Areas For Future Inquiry Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Future Experiments!  The Fermi Gamma Ray Space Telescope will be studying the extragalactic diffuse gamma ray background - if dark matter reionized the universe, it will also have generated a very bright background  Although a typical thermal WIMP would provide only ~0.5% of the 1-10 GeV background observed by EGRET, a WIMP capable of reionizing the universe would generate a background comparable to that observed (FGST would resolve very little of that flux) Open Questions/Areas For Future Inquiry Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Future Experiments!  21 cm emission from neutral gas corresponds to radio frequencies (1.4 GHz)/(1+z)  Very large radio observatories such as LOFAR may be able to map out the detailed history of reionization with redshift Open Questions/Areas For Future Inquiry Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Future Experiments!  As the Pamela collaboration accumulates and analyzes more data, they project that they will measure the positron fraction up to ~ GeV Open Questions/Areas For Future Inquiry Dan Hooper - Did Dark Matter Annihilations Reionize The Universe?

Summary  Between ~200 million and ~1 billion years after the big bang, the baryonic gas in our universe was almost entirely reionized - the source(s) of the responsible radiation may include quasars, early stars, and/or dark matter annihilations  Dark matter annihilations in typical thermal WIMP scenarios lead to only ~1% of the gas becoming ionized  WIMPs which annihilate primarily to leptons are ~10 times more efficient at ionizing gas (importance of inverse Compton scattering!)  If dark matter is responsible for the PAMELA positron excess, then it is also expected to have played a major role in the reionization of our universe

Summary There are many possible empirical roads toward better understanding dark matter’s role in reionization:  Planck - improved measurement of the universe’s Thompson optical depth, perhaps including redshift information  Fermi Gamma Ray Space Telescope - measurements of the extragalactic diffuse gamma ray background  LOFAR - 21 cm mapping opens the possibility of tracing the reionization history of the universe  Pamela - higher energy measurements enable us to better constrain the nature of any WIMP that might be responsible