We study the first Kaluza-Klein excitation of the Higgs boson in universal extra dimensions as a dark matter candidate. The first-level Higgs boson could be the lightest Kaluza-Klein particle, which is stable due to the conservation of Kaluza-Klein parity, in non-minimal models where boundary localized terms modify the mass spectrum. We calculate the relic abundance and find that it agrees with the observed dark matter density if the mass of the first-level Higgs boson is slightly above 2 TeV, not considering coannihilations and assuming no relative mass splitting among the first-level Kaluza-Klein modes. In the case of coannihilations and a non-zero mass splitting, the mass of the first-level Higgs boson can range from 1 TeV to 4 TeV. We s...
We critically reexamine two possible dark matter candidates within the Standard Model. First, we con...
We critically reexamine two possible dark matter candidates within the Standard Model. First, we con...
Minimal universal extra dimensions (mUED) is often thought to predict that the lightest Kaluza-Klein...
AbstractWe study the first Kaluza–Klein excitation of the Higgs boson in universal extra dimensions ...
AbstractWe study the first Kaluza–Klein excitation of the Higgs boson in universal extra dimensions ...
In models with universal extra dimensions (UED), the lightest Kaluza-Klein excitation of neutral ele...
Abstract In models with universal extra dimensions (UED), the lightest Kaluza-Klein excitation of ne...
We propose that cold dark matter is made of Kaluza-Klein particles and explore avenues for its detec...
In models with universal extra dimensions (UED), the lightest Kaluza-Klein excitation of neutral ele...
In models with universal extra dimensions (UED), the lightest Kaluza-Klein excitation of neutral ele...
We propose that cold dark matter is made of Kaluza-Klein particles and explore avenues for its detec...
We propose that cold dark matter is made of Kaluza-Klein particles and explore avenues for its detec...
Abstract We study dark matter physics in the Minimal Supersymmetric Standard Model with non-universa...
Minimal universal extra dimensions (mUED) is often thought to predict that the lightest Kaluza-Klein...
We critically reexamine two possible dark matter candidates within the Standard Model. First, we con...
We critically reexamine two possible dark matter candidates within the Standard Model. First, we con...
We critically reexamine two possible dark matter candidates within the Standard Model. First, we con...
Minimal universal extra dimensions (mUED) is often thought to predict that the lightest Kaluza-Klein...
AbstractWe study the first Kaluza–Klein excitation of the Higgs boson in universal extra dimensions ...
AbstractWe study the first Kaluza–Klein excitation of the Higgs boson in universal extra dimensions ...
In models with universal extra dimensions (UED), the lightest Kaluza-Klein excitation of neutral ele...
Abstract In models with universal extra dimensions (UED), the lightest Kaluza-Klein excitation of ne...
We propose that cold dark matter is made of Kaluza-Klein particles and explore avenues for its detec...
In models with universal extra dimensions (UED), the lightest Kaluza-Klein excitation of neutral ele...
In models with universal extra dimensions (UED), the lightest Kaluza-Klein excitation of neutral ele...
We propose that cold dark matter is made of Kaluza-Klein particles and explore avenues for its detec...
We propose that cold dark matter is made of Kaluza-Klein particles and explore avenues for its detec...
Abstract We study dark matter physics in the Minimal Supersymmetric Standard Model with non-universa...
Minimal universal extra dimensions (mUED) is often thought to predict that the lightest Kaluza-Klein...
We critically reexamine two possible dark matter candidates within the Standard Model. First, we con...
We critically reexamine two possible dark matter candidates within the Standard Model. First, we con...
We critically reexamine two possible dark matter candidates within the Standard Model. First, we con...
Minimal universal extra dimensions (mUED) is often thought to predict that the lightest Kaluza-Klein...