Abstract A measurement of off-shell Higgs boson production in the decay channel is presented. The measurement uses 140 fb−1of proton–proton collisions at TeV collected by the ATLAS detector at the Large Hadron Collider and supersedes the previous result in this decay channel using the same dataset. The data analysis is performed using a neural simulation-based inference method, which builds per-event likelihood ratios using neural networks. The observed (expected) off-shell Higgs boson production signal strength in the decay channel at 68% CL is ( ). The evidence for off-shell Higgs boson production using the decay channel has an observed (expected) significance of 2.5σ(1.3σ). The expected result represents a significant improvement relative to that of the previous analysis of the same dataset, which obtained an expected significance of 0.5σ. When combined with the most recent ATLAS measurement in the decay channel, the evidence for off-shell Higgs boson production has an observed (expected) significance of 3.7σ(2.4σ). The off-shell measurements are combined with the measurement of on-shell Higgs boson production to obtain constraints on the Higgs boson total width. The observed (expected) value of the Higgs boson width at 68% CL is ( ) MeV. 
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                            Luminescent solar concentrator containing Parylene-C microfibrous thin film infiltrated with Lumogen F Red 305
                        
                    
    
            Abstract Luminescent solar concentrators (LSCs) were made by the infiltration of microfibrous thin films (µFTFs) of Parylene C by Lumogen F Red 305 (LFR305), in order to maximize the concentration of light made available to a photovoltaic solar cell (PVSC). The Parylene-CµFTFs with either tilted columnar or chevronic morphology were fabricated using physicochemical vapor deposition and infiltrated with LFR305 using thermal evaporation. Application of a voltage across a photoresistor illuminated by a solar simulator (AM1.5) through an LFR305-infiltrated Parylene-C LSC resulted in an enhancement of the ON-OFF minimum current ratio by a factor of compared to the ratio before LFR305 infiltration/deposition, regardless of morphology; furthermore, LFR305 infiltration enhanced the ON-OFF minimum current ratio by %, depending on the morphology. The LSC concentration factor was determined to be after integration with a monocrystalline-silicon solar cell, depending on the morphology. 
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                            - Award ID(s):
- 2011996
- PAR ID:
- 10546128
- Publisher / Repository:
- IOP Publishing
- Date Published:
- Journal Name:
- Journal of Optics
- Volume:
- 26
- Issue:
- 11
- ISSN:
- 2040-8978
- Format(s):
- Medium: X Size: Article No. 115901
- Size(s):
- Article No. 115901
- Sponsoring Org:
- National Science Foundation
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