ultimate low light-level sensor development · roadmap for lll sensors t1.2 monitoring &...

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Ultimate Low Light-Level Sensor Development Katharina Henjes-Kunst, DESY, Andrii Nagai, UNIGE and Derek Strom, MPP ICASiPM 11.06.2018

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Page 1: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

Ultimate Low Light-Level Sensor Development

Katharina Henjes-Kunst, DESY, Andrii Nagai, UNIGE and Derek Strom, MPP

ICASiPM 11.06.2018

Page 2: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

• SENSE is a European Commission Horizon 2020 Coordination and Support Action (FET-OPEN)

aiming to coordinate research and development efforts in academia and industry in low light level

sensoring

• Started in September 2016 for three years

• Experience from ASPERA and APPEC technology fora:

Øcoordination of European research groups concerned with low light-level sensors is currently missing

Ørepresentatives from academia and industry pointed out that developments could be made faster when one or a small

number of labs could take the lead of these activities

SENSE – Background

ICASiPM 11.06.2018 2

successful midterm review withEC in November 2017

Page 3: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

3ICASiPM 11.06.2018

CoordinatorKatharina Henjes-Kunst

Expert Group

European Commission

Project Team

WP 1Roadmapping&

MonitoringWP 2

R&D CooperationWP 3

Outreach & TEPWP 4

Training & LearningWP 5

Project Management

T1.1Creation of a

European R&D Roadmap for LLL

sensors

T1.2Monitoring &

Evaluation of R&D Progress

T2.1Agreement on R&D

Cooperation

T2.2Lining to other

European Initiatives

T2.3Fostering the

Exchange between Academia and

Industry

T3.1Development of a

Technology Exchange Platform (TEP)

T3.2Extension and

Moderation of TEP

T3.3Website, Newsletter &

Social Media

T4.1Concept for Summer

Schools

T4.2Implement TEP Training Section

T4.3LLL Technology Training Events

T5.1Overall Management

Razmik MirzoyanDerek Strom

Teresa MontaruliDomenico Della Volpe

Andrii Nagai

Andreas HaungsKatrin Link

Thomas Huber

Katharina Henjes-KunstThomas Berghöfer

Katharina Henjes-KunstThomas Berghöfer

Page 4: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

SENSE – Expert Group

ICASiPM 11.06.2018 4

• the Experts Group (EG) comprises first-rate developers in the field of low light-level sensors,

representatives of major research projects requiring low light-level sensors

• they act as an advisory panel to the project:

§ Razmik Mirzoyan, MPI for Physics, Germany, (head of experts group)§ Sergey Vinogradov, Lebedev Physical Institute, Russia

§ Elena Popova, MEPHI, Russia

§ Klaus Attenkoffer, Brookhaven National Lab, US§ Bayarto Lubsandorzhiev, INR of the Russian Academy of Sciences, Russia§ Samo Korpar, Jožef Stefan Institute, Slowenia§ Peter Krizan, Jožef Stefan Institute, Slowenia§ Osvaldo Catalano, INAF, Italy§ Claudio Piemonte, Broadcom, Germany

§ John Smedley, Brookhaven National Lab, US

§ Stefan Schönert, Technische Unversität München, Germany

§ Eric Delagnes, CEA, France

§ Nicoleta Dinu-Jaeger, CNRS Artemis, France§ Giovanni Bonanno, INAF, Italy§ David Gascon, ICCUB, Spain§ Wei Shen, University of Heidelberg, Germany§ Hiro Tajima, University of Nagoya, Japan

Page 5: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

SENSE – WP 1

ICASiPM 11.06.2018 5

Experimental partExperimental partExperimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Experimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

• aim: roadmap incorporating all R&D activities necessary for the development of (the)

ultimate LLL sensor(s)

• steps afterwards: monitor and evaluate the progress, coordination of the efforts

• first version of roadmap is available since October on website and in follow up process

https://www.sense-pro.org/documents/roadmap

Page 6: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

11.06.18 My meeting 6

SENSE – WP 2: Tasks

2.1 Agreement on R&D cooperation between research groups and industry for advancing LLL sensorso Minimizing the duplication of efforts given the limited funds for innovation;o Encouraging the formation of Consortia between research Institutions and Industrial partners ;o Negotiation between research institutes and industries to optimize costs of developments capable of

satisfying ‘common needs’;o Offering a platform for testing devices;o Offering a platform for disseminating knowledge on developments;o Develop a sensors database with “quality factor”.2.2Linking to other European initiativeso Provide information on the R&D activities followed by SENSE through the web page (WB3), phone calls of

the working group and with EG;2.3Fostering the exchange between academia and industryo Organization of Technology Forum: https://indico.cern.ch/event/688729/overview

Page 7: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

SENSE – WP 2

ICASiPM 11.06.2018 7

Experimental partExperimental partExperimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Experimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

puls

ed li

ght

cont

inuo

us li

ght

Monochromator

Photodiode(S1337-1010BQ)

Integration sphere

Translationstage

Xe 75 W lamp: 260 ÷ 1800 nm

ND filters (81.3% ÷ 0.01%)

LED`s : 280, 340, 375, 405,

420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10x10 mm2

(S1337-1010BQ)

SiPM

Page 8: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

SENSE – WP 2: PDE vs. ΔV

ICASiPM 11.06.2018 8

Experimental partExperimental partExperimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Experimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Area: 3 ✕ 3 mm2

Microcell: 50 ✕ 50 µm2

LVR-3050CS

7.8% difference in average between PDE from three partners

Page 9: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

11.06.18 My meeting 9

SENSE – WP 2: PDE vs. Wavelength

PDE vs. λ measured within 6.4 %

Hamamatsu: LVR-3050

Page 10: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

11.06.18 My meeting 10

SENSE – WP 2: PXT vs. ΔV

More details:A. Nagai “SENSE: A comparison of photon detection efficiency and optical crosstalk of various SiPM devices”, NIM A, Available online 22 November 2017

Page 11: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

SENSE – WP 2

ICASiPM 11.06.2018 11

Experimental partExperimental partExperimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Experimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Area: 3 ✕ 3 mm2

Microcell: 50 ✕ 50 µm2

LVR-3050CS

By now:• The experimental setup was build & calibrated: DCR(ΔV, VThr.), PXT(ΔV), PDE(ΔV, λ);• Cooperation agreement between 5 institutes was established:• DESY; UNIGE; KIT; Nagoya University – ISEE, MPI for Physics, INAF –OAC• MPPC devices were distributed between institutes• Receiving newest devices from producers (Hamamatsu, SensL, AdvansID, Ketek, Ndl Sipm)

Future: • Evaluate systematic errors for each experimental setup;• Establish measurements and analysis procedures;• Applying for European money to develop a SiPM for medical application

Page 12: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

SENSE – WP 2 TechForum 21/22nd of June

ICASiPM 11.06.2018 12

Experimental partExperimental partExperimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Experimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Area: 3 ✕ 3 mm2

Microcell: 50 ✕ 50 µm2

LVR-3050CS

https://indico.cern.ch/event/688729/overview

- About 90 participants by now

- 2 days programme

Please register!

Page 13: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

SENSE – WP 3 and WP 4

ICASiPM 11.06.2018 13

• WP3: Website (https://www.sense-pro.org) and newsletter online/ active

• SENSE @ several upcoming workshops/ conferences: ICASiPM, RICH 2018, Barcelona Techno Week,

E+CRS, ..., several other workshops already done, first two SENSE publications

• Calendar with LLLrelated events and workshops online

• WP4: technology training sessions during summer schools in summer 2018 (MAGIC, TESHEP) and

Training event in summer 2019

è Material (videos of training sessions) will be prepared for website

• Consortium partners with experts: several H2020-proposals (FET-OPEN, FET CSA, FET Launchpad)

E+CRS

Page 14: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

SENSE – come and join!

ICASiPM 11.06.2018 14

Experimental partExperimental partExperimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Experimental partXe 75 W lamp: 250nm to 1800 nm

Con

tinuo

us li

ght

Puls

ed li

ght

Monochromator

Integration sphere

Translationstage

Motorized wheel with 12 filters+ Diffuser

(transmission from 81.3% to 0.01%)

LED`s :280, 340, 375, 405, 420, 455, 470, 505, 525, 530, 565 & 572 nm

Photodiode 10✕10 mm2

(S1337-1010BQ)

Area: 3 ✕ 3 mm2

Microcell: 50 ✕ 50 µm2

LVR-3050CS

Page 15: Ultimate Low Light-Level Sensor Development · Roadmap for LLL sensors T1.2 Monitoring & Evaluation of R&D Progress T2.1 Agreement on R&D Cooperation T2.2 Lining to other European

SENSE

ICASiPM 11.06.2018 15

Thank you for your attention!

Please visit sense-pro.org for the latest news and the SENSE Forum for latestdiscussions and stay in contact with us

[email protected]@[email protected]