Javascript must be enabled to continue!
$$^{222}$$Rn emanation measurements for the XENON1T experiment
View through CrossRef
AbstractThe selection of low-radioactive construction materials is of utmost importance for the success of low-energy rare event search experiments. Besides radioactive contaminants in the bulk, the emanation of radioactive radon atoms from material surfaces attains increasing relevance in the effort to further reduce the background of such experiments. In this work, we present the $$^{222}$$
222
Rn emanation measurements performed for the XENON1T dark matter experiment. Together with the bulk impurity screening campaign, the results enabled us to select the radio-purest construction materials, targeting a $$^{222}$$
222
Rn activity concentration of $$10\,\mathrm{\,}\upmu \mathrm{Bq}/\mathrm{kg}$$
10
μ
Bq
/
kg
in $$3.2\,\mathrm{t}$$
3.2
t
of xenon. The knowledge of the distribution of the $$^{222}$$
222
Rn sources allowed us to selectively eliminate problematic components in the course of the experiment. The predictions from the emanation measurements were compared to data of the $$^{222}$$
222
Rn activity concentration in XENON1T. The final $$^{222}$$
222
Rn activity concentration of $$(4.5\pm 0.1)\,\mathrm{\,}\upmu \mathrm{Bq}/\mathrm{kg}$$
(
4.5
±
0.1
)
μ
Bq
/
kg
in the target of XENON1T is the lowest ever achieved in a xenon dark matter experiment.
Springer Science and Business Media LLC
E. Aprile
J. Aalbers
F. Agostini
M. Alfonsi
L. Althueser
F. D. Amaro
V. C. Antochi
E. Angelino
J. R. Angevaare
F. Arneodo
D. Barge
L. Baudis
B. Bauermeister
L. Bellagamba
M. L. Benabderrahmane
T. Berger
P. A. Breur
A. Brown
E. Brown
S. Bruenner
G. Bruno
R. Budnik
C. Capelli
J. M. R. Cardoso
D. Cichon
B. Cimmino
M. Clark
D. Coderre
A. P. Colijn
J. Conrad
J. P. Cussonneau
M. P. Decowski
A. Depoian
P. Di Gangi
A. Di Giovanni
R. Di Stefano
S. Diglio
A. Elykov
G. Eurin
A. D. Ferella
W. Fulgione
P. Gaemers
R. Gaior
A. Gallo Rosso
M. Galloway
F. Gao
L. Grandi
M. Garbini
C. Hasterok
C. Hils
K. Hiraide
L. Hoetzsch
E. Hogenbirk
J. Howlett
M. Iacovacci
Y. Itow
F. Joerg
N. Kato
S. Kazama
M. Kobayashi
G. Koltman
A. Kopec
H. Landsman
R. F. Lang
L. Levinson
Q. Lin
S. Lindemann
M. Lindner
F. Lombardi
J. A. M. Lopes
E. López Fune
C. Macolino
J. Mahlstedt
L. Manenti
A. Manfredini
F. Marignetti
T. Marrodán Undagoitia
K. Martens
J. Masbou
D. Masson
S. Mastroianni
M. Messina
K. Miuchi
A. Molinario
K. Morå
S. Moriyama
Y. Mosbacher
M. Murra
J. Naganoma
K. Ni
U. Oberlack
K. Odgers
J. Palacio
B. Pelssers
R. Peres
J. Pienaar
V. Pizzella
G. Plante
J. Qin
H. Qiu
D. Ramírez García
S. Reichard
A. Rocchetti
N. Rupp
J. M. F. dos Santos
G. Sartorelli
N. Šarčević
M. Scheibelhut
S. Schindler
J. Schreiner
D. Schulte
M. Schumann
L. Scotto Lavina
M. Selvi
F. Semeria
P. Shagin
E. Shockley
M. Silva
H. Simgen
A. Takeda
C. Therreau
D. Thers
F. Toschi
G. Trinchero
C. Tunnell
M. Vargas
G. Volta
O. Wack
H. Wang
Y. Wei
C. Weinheimer
M. Weiss
D. Wenz
J. Westermann
C. Wittweg
J. Wulf
Z. Xu
M. Yamashita
J. Ye
G. Zavattini
Y. Zhang
T. Zhu
J. P. Zopounidis
Title: $$^{222}$$Rn emanation measurements for the XENON1T experiment
Description:
AbstractThe selection of low-radioactive construction materials is of utmost importance for the success of low-energy rare event search experiments.
Besides radioactive contaminants in the bulk, the emanation of radioactive radon atoms from material surfaces attains increasing relevance in the effort to further reduce the background of such experiments.
In this work, we present the $$^{222}$$
222
Rn emanation measurements performed for the XENON1T dark matter experiment.
Together with the bulk impurity screening campaign, the results enabled us to select the radio-purest construction materials, targeting a $$^{222}$$
222
Rn activity concentration of $$10\,\mathrm{\,}\upmu \mathrm{Bq}/\mathrm{kg}$$
10
μ
Bq
/
kg
in $$3.
2\,\mathrm{t}$$
3.
2
t
of xenon.
The knowledge of the distribution of the $$^{222}$$
222
Rn sources allowed us to selectively eliminate problematic components in the course of the experiment.
The predictions from the emanation measurements were compared to data of the $$^{222}$$
222
Rn activity concentration in XENON1T.
The final $$^{222}$$
222
Rn activity concentration of $$(4.
5\pm 0.
1)\,\mathrm{\,}\upmu \mathrm{Bq}/\mathrm{kg}$$
(
4.
5
±
0.
1
)
μ
Bq
/
kg
in the target of XENON1T is the lowest ever achieved in a xenon dark matter experiment.
Related Results
Expressions of emanation fictive motion events in Thai
Expressions of emanation fictive motion events in Thai
This study investigates Thai expressions of emanation fictive motion events within the framework of cognitive linguistics. An emanation event is an imagined event in which an intan...
MicroRNA-221 and microRNA-222 regulate gastric carcinoma cell proliferation and radioresistance by targeting PTEN
MicroRNA-221 and microRNA-222 regulate gastric carcinoma cell proliferation and radioresistance by targeting PTEN
Abstract
Background
MicroRNAs (miRNAs) can function as either oncogenes or tumor suppressor genes via regulation of cell proliferation and/or apo...
Pronssikautemme uudistuva kuva
Pronssikautemme uudistuva kuva
Kirja-arvioSalo, Unto: Satakunnan pronssikausi. Satakunnan historia I, 2Kielenaineksetahjo (kieli: suomi, sivulla: 222)aihe (kieli: suomi, sivulla: 218)aihe (kieli: suomi, sivulla:...
Material radiopurity control in the XENONnT experiment
Material radiopurity control in the XENONnT experiment
AbstractThe selection of low-radioactive construction materials is of the utmost importance for rare-event searches and thus critical to the XENONnT experiment. Results of an exten...
Application and modeling of an online distillation method to reduce krypton and argon in XENON1T
Application and modeling of an online distillation method to reduce krypton and argon in XENON1T
Abstract
A novel online distillation technique was developed for the XENON1T dark matter experiment to reduce intrinsic background components more volatile than xeno...
Sun heated MeV-scale dark matter and the XENON1T electron recoil excess
Sun heated MeV-scale dark matter and the XENON1T electron recoil excess
Abstract
The XENON1T collaboration reported an excess of the low-energy electron recoil events between 1 and 7 keV. We explore the possibility to explain such ...
Offline tagging of radon-induced backgrounds in XENON1T and applicability to other liquid xenon time projection chambers
Offline tagging of radon-induced backgrounds in XENON1T and applicability to other liquid xenon time projection chambers
This paper details the first application of a software tagging algorithm to reduce radon-induced backgrounds in liquid noble element time projection chambers, such as XENON1T and X...
Emanation‐Sedimentary Metallogenic Series and Models of the Proterozoic Rift in the Kangdian Axis
Emanation‐Sedimentary Metallogenic Series and Models of the Proterozoic Rift in the Kangdian Axis
Abstract The Kangdian axis basement can be divided into two tectonic layers. The lower tectonic layer is the crystalline basement which is made up of the Archaean Dibadu Formation...

