We show that dark matter can be accounted for by an axion that solves the strong CP problem, but is much lighter than usual due to a Z(N) symmetry. The whole mass range from the canonical QCD axion down to the ultra-light regime is allowed, with 3 <= N less than or similar to 65. This includes the first proposal of a "fuzzy dark matter" QCD axion with m(a) similar to 10(-(22) over tilde)eV. A novel misalignment mechanism occurs - trapped misalignment - due to the peculiar temperature dependence of the Z(N) axion potential. The dark matter relic density is enhanced because the axion field undergoes two stages of oscillations: it is first trapped in the wrong minimum, which effectively delays the onset of true oscillations. Trapped misalignme...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
The main mechanism responsible for Axion-Like-Particle (ALP) production in the early universe is the...
We show that dark matter can be accounted for by an axion that solves the strong CP problem, but is ...
We explore whether the axion which solves the strong CP problem can naturally be much lighter than t...
We explore whether the axion which solves the strong CP problem can naturally be much lighter than t...
We explore whether the axion which solves the strong CP problem can naturally be much lighter than t...
If there are a plethora of axions in nature, they may have a complicated potential and create an axi...
The QCD axion is a good dark matter candidate. The observed dark matter abundance can arise from mis...
We explore whether the axion which solves the strong CP problem can naturally be much lighter than t...
Unlike the electroweak sector of the standard model of particle physics, quantum chromodynamics (QCD...
The existence of dark matter is one of the unsolved fundamental problems of physics and cannot be ex...
We propose two models where a U(1) Peccei-Quinn global symmetry arises accidentally and is respected...
With the Higgs boson discovery at the Large Hadron Collider, the Standard Model continues to prove i...
Axions solve the Strong CP Problem and are a cold dark matter candidate. The combined constraints fr...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
The main mechanism responsible for Axion-Like-Particle (ALP) production in the early universe is the...
We show that dark matter can be accounted for by an axion that solves the strong CP problem, but is ...
We explore whether the axion which solves the strong CP problem can naturally be much lighter than t...
We explore whether the axion which solves the strong CP problem can naturally be much lighter than t...
We explore whether the axion which solves the strong CP problem can naturally be much lighter than t...
If there are a plethora of axions in nature, they may have a complicated potential and create an axi...
The QCD axion is a good dark matter candidate. The observed dark matter abundance can arise from mis...
We explore whether the axion which solves the strong CP problem can naturally be much lighter than t...
Unlike the electroweak sector of the standard model of particle physics, quantum chromodynamics (QCD...
The existence of dark matter is one of the unsolved fundamental problems of physics and cannot be ex...
We propose two models where a U(1) Peccei-Quinn global symmetry arises accidentally and is respected...
With the Higgs boson discovery at the Large Hadron Collider, the Standard Model continues to prove i...
Axions solve the Strong CP Problem and are a cold dark matter candidate. The combined constraints fr...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
The main mechanism responsible for Axion-Like-Particle (ALP) production in the early universe is the...