From the 1 of 11 linked papers with an AI index.
1 citations · 1 across the 2 of their papers we have counts for
11 papers
Suppressed Quantum Effects of Weakly Coupled Waves
Yunjia Bao, Dhong Yeon Cheong, Nicholas L. Rodd +3
The paper analyzes why quantum signatures of weakly coupled waves such as axion dark matter and gravitational radiation are extremely hard to detect, showing that detector coarse‑g…
On the Energy Distribution of the Galactic Center Excess' Sources
Florian List, Yujin Park, Nicholas L. Rodd +2
The Galactic Center Excess (GCE) may yet herald the discovery of annihilating dark matter. Weighing against that conclusion are analyses showing evidence for dim point sources with…
Positively Identifying HEFT or SMEFT
Grant N. Remmen, Nicholas L. Rodd
We establish the bounds on Wilson coefficients of the Higgs effective field theory (HEFT) mandated by unitarity and analyticity. These positivity constraints can be projected into…
Testing Real WIMPs with CTAO
Matthew Baumgart, Salvatore Bottaro, Diego Redigolo +2
We forecast the reach of the upcoming Cherenkov Telescope Array Observatory (CTAO) to the full set of real representations within the paradigm of minimal dark matter. We employ eff…
Intrinsically Quantum Effects of Axion Dark Matter are Undetectable
Yunjia Bao, Dhong Yeon Cheong, Nicholas L. Rodd +3
Is the usual treatment of axion dark matter as a classical field reliable? We show that the answer is subtle: the axion field could well be in a quantum state that has no complete…
Magnets are Weber Bar Gravitational Wave Detectors
Valerie Domcke, Sebastian A. R. Ellis, Nicholas L. Rodd
When a gravitational wave (GW) passes through a DC magnetic field, it couples to the conducting wires carrying the currents which generate the magnetic field, causing them to oscil…