Publication:

Ray scattering model for spherical transparent particles

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2024-08-07T11:49:19Z

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134064

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PH-IC

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IINFCOM

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IC

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EPFL

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105390

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144412

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10417

cris.virtual.unitManager

Urbanke, Rüdiger

cris.virtual.unitManager

Larus, James

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387aca29-3c15-44c1-88ae-0e7e06feaf20

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a59dc541-d1c7-4af3-944f-2ec60c8dc866

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a59dc541-d1c7-4af3-944f-2ec60c8dc866

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387aca29-3c15-44c1-88ae-0e7e06feaf20

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a59dc541-d1c7-4af3-944f-2ec60c8dc866

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a59dc541-d1c7-4af3-944f-2ec60c8dc866

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387aca29-3c15-44c1-88ae-0e7e06feaf20

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datacite.rights

restricted

dc.contributor.author

Simonot, L.

dc.contributor.author

Hébert, M.

dc.contributor.author

Hersch, R.D.

dc.contributor.author

Garay, H.

dc.date.accessioned

2009-02-12T17:36:55

dc.date.created

2009-02-12

dc.date.issued

2008

dc.date.modified

2024-10-17T15:23:22.328172Z

dc.description.abstract

By printing a variable number of droplets onto the same pixel location, ink jet printers produce pixels at variable dot-sizes yielding several darkness levels. Varying the number of printed droplets affects the ink volume deposited onto the substrate. In the present contribution, we explore the possibility of producing accurate spectral reflectance predictions at all pixel dot-sizes. For this purpose, we use a Clapper-Yule model, extended according to Beer's law,which accounts for ink thickness variations. This model expresses each colorant transmittance as a function of its constituent ink transmittances and their respective relative thicknesses. These relative thicknesses are initially computed when calibrating the model, at a given pixel dot-size, and can then be dynamically scaled according to the printed pixel dot-size. We first study the effect of varying pixel dot-sizes on the halftone's physical (mechanical) dot-gain. We then express the ink volume variations as a function of pixel dotsizes. Lastly, we show how, using the thickness extended Clapper-Yule model, we can effectively predict reflectances for different configurations of ink pixel dot-sizes.

dc.description.sponsorship

LSP

dc.identifier.doi

10.1364/JOSAA.25.001521

dc.identifier.isi

WOS:000257928000006

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/35272

dc.relation

https://infoscience.epfl.ch/record/134064/files/rsmfstp.pdf

dc.relation.journal

Journal of Optical Society of America A

dc.subject

Spectral prediction

dc.subject

variable

dc.subject

dot-size printers

dc.title

Ray scattering model for spherical transparent particles

dc.type

text::journal::journal article::research article

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Publication

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oai:infoscience.tind.io:134064

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n/a

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Journal Articles

epfl.legacy.submissionform

ARTICLE

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OpenAIREv4

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IC

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article

epfl.peerreviewed

REVIEWED

epfl.publication.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

epfl.writtenAt

EPFL

oaire.citation.endPage

1534

oaire.citation.issue

7

oaire.citation.startPage

1521

oaire.citation.volume

25

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