22/9/2017 LIDINE 2017 @ SLAC Tatsuki Washimi (Waseda University, Japan)
Study of the Low-Energy ER/NR Discrimination and its Electric-Field Dependence with Liquid Argon
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Study of the Low-Energy ER/NR Discrimination and its - - PowerPoint PPT Presentation
1/20 Study of the Low-Energy ER/NR Discrimination and its Electric-Field Dependence with Liquid Argon 22/9/2017 LIDINE 2017 @ SLAC Tatsuki Washimi (Waseda University, Japan) 2/20 WIMP Search with Liquid Noble Gas arXiv:1707.08042v2 Energy
1/20
arXiv:1707.08042v2
Energy Threshold for BG Rejection
Sensitivity for low mass region is very different!!
LUX DarkSide50 PandaX WArP
XENON100 LXe LAr DEAP3600 XMASS XENON1T
We are interested in S2/S1 performance especially its electric field dependence in Argon. LAr 200V/cm ≠ LXe 200V/cm ?? Drift field may be a key of low threshold.
2/20
Xenon Argon
Carl Eric Dahl’s thesis (2009) Huajie Cao’s thesis (2014) Many groups evaluate the ER/NR discrimination power of S2/S1.
above 200 V/cm (Kaixuan Ni, APP14) Basic properties are well-known ⇒Improve sensitivity of current experiments S2 information is not enough at higher drift field and for BG rejection. S2/S1 is not effectively used in current experiments. SCENE measured basic property of NR events at drift field < 500 V/cm.
discrimination above 1 kV/cm!
ER NR NR
200L Vessel Liquefier
(75L Vessel)
Liquid Filter
LAr Tank He Compressor Micro Torre & N2 Filter Pump Heat Exchanger
Detector
LAr Tokyo
Kamioka YangYang
Waseda University
4/20
200L Vessel
PMT (HAMAMTSU R11065) ESR Reflector ITO Quartz
‒ 10 nm of ITO on the Quartz
TPB
‒ evaporated on ESR & ITO Quartz
CW Circuit
‒ Makes high voltage (~30kV) in the LAr , and supplies to the TPC
Basic Parameters
5/20
τ = 1.9±0.1 ms (~0.16ppb) 5.7 p.e./keVee Light Yield Electron Lifetime
22Na Data
E = 0 V/cm
60Co Data
E = 50 V/cm
Waveform
6/20
z
D = 10mm
Anode Grid
60Co Data
(normalized to z=0)
60Co Data
(normalized to p=1.5)
Pressure 𝑞 (atm) Liquid Level 𝑨 (mm)
7/20
The environment is under control & behavior is well understood
ER (~340keVee) NR (~200keVnr)
(Normalized at 0 kV/cm for S1 , at 3 kV/cm for S2)
(absolute value)
In general, S1(S2) decreases (increases) at higher E-Field due to recombination effect. However, its behavior is much different between ER and NR (S1 is almost flat).
8/20
ER NR
【Source】 ER Calibration : 22Na BTB NR Calibration : 252Cf TOF
γ neutron Tag
Lead Block NaI(Tl) PE Block
【DAQ】 FADC : SIS3316 (250MS/s) Trigger : 3ch coincidence of TPC Top, Bottom and NaI (coincidence width = 1.0 us)
252Cf Data
2 MeV 100 keV
~1m
TPC
CW
LAr
252Cf Data
① ② TPC ⑥ (outside of chamber)
9/20
TPC NTD3 NTD4 NTD2
11/20
NTD1 (LAr) NTD6 (LS)
(PSD = Slow/Total = 1 - Fprompt)
can be selected.
and quenching factor (analysis is ongoing)
NR-NR (pure n) ER-ER (γ) neutron
12/20
ER mean±1σ NR mean±1σ
22Na Data 252Cf Data
~40keVnr
ER mean±1σ
~40keVnr
Before PSD selection
13/20 Preliminary
ER mean±1σ NR mean±1σ
22Na Data 252Cf Data
~40keVnr
ER mean±1σ
~40keVnr
Before PSD selection
14/20 Preliminary
ER mean±1σ NR mean±1σ
22Na Data 252Cf Data
~40keVnr ~40keVnr
ER mean±1σ
Before PSD selection
15/20 Preliminary
252Cf 22Na
0.2 kV/cm 1.0 kV/cm 3.0 kV/cm ( μER - μNR ) / σER 0.3 1.4 2.0
252Cf 22Na 252Cf 22Na
Before PSD selection
16/20
17/20
See detail : JPS Conf.Proc. 11, 040003 (2016) Take some approaches to get detailed understandings of LAr response in electric field.
photon at each step of Geant4.
the simulation. (refer to NEST)
S1 Fast (p.e.) S1 Slow/Total S2 (p.e.)
18/20
Some groups (DAMA, CoGeNT, CDMS2(Si)) claim the discovery of ~10GeV WIMP.
To search the low mass WIMP,
ANKOK project Low mass WIMP search with
19/20
See detail : M.Kimura’s Talk @ TAUP2017
https://indico.cern.ch/event/606690/contributions/2591649/
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