activity
20172020
most citedConstraining the Spin-Dependent WIMP-Nucleon Cross Sections with XENON1T

239 citations · 345 across the 3 of their papers we have counts for

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physics.ins-det2020

Energy resolution and linearity of XENON1T in the MeV energy range

E. Aprile, J. Aalbers, F. Agostini +135

Xenon dual-phase time projection chambers designed to search for Weakly Interacting Massive Particles have so far shown a relative energy resolution which degrades with energy abov…

physics.ins-det2019

XENON1T Dark Matter Data Analysis: Signal Reconstruction, Calibration and Event Selection

E. Aprile, J. Aalbers, F. Agostini +125

The XENON1T experiment at the Laboratori Nazionali del Gran Sasso is the most sensitive direct detection experiment for dark matter in the form of weakly interacting particles (WIM…

physics.ins-det2019

The XENON1T Data Acquisition System

E. Aprile, J. Aalbers, F. Agostini +130

The XENON1T liquid xenon time projection chamber is the most sensitive detector built to date for the measurement of direct interactions of weakly interacting massive particles wit…

physics.ins-det201980 cited

XENON1T Dark Matter Data Analysis: Signal & Background Models, and Statistical Inference

E. Aprile, J. Aalbers, F. Agostini +123

The XENON1T experiment searches for dark matter particles through their scattering off xenon atoms in a 2 tonne liquid xenon target. The detector is a dual-phase time projection ch…

physics.ins-det2018

Field dependence of electronic recoil signals in a dual-phase liquid xenon time projection chamber

E. Hogenbirk, M. P. Decowski, K. McEwan +1

We present measurements of light and charge signals in a dual-phase time projection chamber at electric fields varying from 10 V/cm up to 500 V/cm and at zero field using 511 keV g…

physics.ins-det2018

Precision measurements of the scintillation pulse shape for low-energy recoils in liquid xenon

E. Hogenbirk, J. Aalbers, P. A. Breur +3

We present measurements of the scintillation pulse shape in liquid xenon for nuclear recoils (NR) and electronic recoils (ER) at electric fields of 0 to 0.5 kV/cm for energies