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Adjustment errors of sunstones in the first step of sky-polarimetric Viking navigation: studies with dichroic cordierite/ tourmaline and birefringent calcite crystals

According to an old but still unproven theory, Viking navigators analysed the skylight polarization with dichroic cordierite or tourmaline, or birefringent calcite sunstones in cloudy/foggy weather. Combining these sunstones with their sun-dial, they could determine the position of the occluded sun,...

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Autores principales: Száz, Dénes, Farkas, Alexandra, Blahó, Miklós, Barta, András, Egri, Ádám, Kretzer, Balázs, Hegedüs, Tibor, Jäger, Zoltán, Horváth, Gábor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society Publishing 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4736922/
https://www.ncbi.nlm.nih.gov/pubmed/26909167
http://dx.doi.org/10.1098/rsos.150406
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author Száz, Dénes
Farkas, Alexandra
Blahó, Miklós
Barta, András
Egri, Ádám
Kretzer, Balázs
Hegedüs, Tibor
Jäger, Zoltán
Horváth, Gábor
author_facet Száz, Dénes
Farkas, Alexandra
Blahó, Miklós
Barta, András
Egri, Ádám
Kretzer, Balázs
Hegedüs, Tibor
Jäger, Zoltán
Horváth, Gábor
author_sort Száz, Dénes
collection PubMed
description According to an old but still unproven theory, Viking navigators analysed the skylight polarization with dichroic cordierite or tourmaline, or birefringent calcite sunstones in cloudy/foggy weather. Combining these sunstones with their sun-dial, they could determine the position of the occluded sun, from which the geographical northern direction could be guessed. In psychophysical laboratory experiments, we studied the accuracy of the first step of this sky-polarimetric Viking navigation. We measured the adjustment error e of rotatable cordierite, tourmaline and calcite crystals when the task was to determine the direction of polarization of white light as a function of the degree of linear polarization p. From the obtained error functions e(p), the thresholds p* above which the first step can still function (i.e. when the intensity change seen through the rotating analyser can be sensed) were derived. Cordierite is about twice as reliable as tourmaline. Calcite sunstones have smaller adjustment errors if the navigator looks for that orientation of the crystal where the intensity difference between the two spots seen in the crystal is maximal, rather than minimal. For higher p (greater than p(crit)) of incident light, the adjustment errors of calcite are larger than those of the dichroic cordierite (p(crit)=20%) and tourmaline (p(crit)=45%), while for lower p (less than p(crit)) calcite usually has lower adjustment errors than dichroic sunstones. We showed that real calcite crystals are not as ideal sunstones as it was believed earlier, because they usually contain scratches, impurities and crystal defects which increase considerably their adjustment errors. Thus, cordierite and tourmaline can also be at least as good sunstones as calcite. Using the psychophysical e(p) functions and the patterns of the degree of skylight polarization measured by full-sky imaging polarimetry, we computed how accurately the northern direction can be determined with the use of the Viking sun-dial under 10 different sky conditions at 61° latitude, which was one of the main Viking sailing routes. According to our expermiments, under clear skies, using calcite or cordierite or tourmaline sunstones, Viking sailors could navigate with net orientation errors [Formula: see text]. Under overcast conditions, their net navigation error depends on the sunstone type: [Formula: see text] , [Formula: see text] and [Formula: see text].
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spelling pubmed-47369222016-02-23 Adjustment errors of sunstones in the first step of sky-polarimetric Viking navigation: studies with dichroic cordierite/ tourmaline and birefringent calcite crystals Száz, Dénes Farkas, Alexandra Blahó, Miklós Barta, András Egri, Ádám Kretzer, Balázs Hegedüs, Tibor Jäger, Zoltán Horváth, Gábor R Soc Open Sci Physics According to an old but still unproven theory, Viking navigators analysed the skylight polarization with dichroic cordierite or tourmaline, or birefringent calcite sunstones in cloudy/foggy weather. Combining these sunstones with their sun-dial, they could determine the position of the occluded sun, from which the geographical northern direction could be guessed. In psychophysical laboratory experiments, we studied the accuracy of the first step of this sky-polarimetric Viking navigation. We measured the adjustment error e of rotatable cordierite, tourmaline and calcite crystals when the task was to determine the direction of polarization of white light as a function of the degree of linear polarization p. From the obtained error functions e(p), the thresholds p* above which the first step can still function (i.e. when the intensity change seen through the rotating analyser can be sensed) were derived. Cordierite is about twice as reliable as tourmaline. Calcite sunstones have smaller adjustment errors if the navigator looks for that orientation of the crystal where the intensity difference between the two spots seen in the crystal is maximal, rather than minimal. For higher p (greater than p(crit)) of incident light, the adjustment errors of calcite are larger than those of the dichroic cordierite (p(crit)=20%) and tourmaline (p(crit)=45%), while for lower p (less than p(crit)) calcite usually has lower adjustment errors than dichroic sunstones. We showed that real calcite crystals are not as ideal sunstones as it was believed earlier, because they usually contain scratches, impurities and crystal defects which increase considerably their adjustment errors. Thus, cordierite and tourmaline can also be at least as good sunstones as calcite. Using the psychophysical e(p) functions and the patterns of the degree of skylight polarization measured by full-sky imaging polarimetry, we computed how accurately the northern direction can be determined with the use of the Viking sun-dial under 10 different sky conditions at 61° latitude, which was one of the main Viking sailing routes. According to our expermiments, under clear skies, using calcite or cordierite or tourmaline sunstones, Viking sailors could navigate with net orientation errors [Formula: see text]. Under overcast conditions, their net navigation error depends on the sunstone type: [Formula: see text] , [Formula: see text] and [Formula: see text]. The Royal Society Publishing 2016-01-20 /pmc/articles/PMC4736922/ /pubmed/26909167 http://dx.doi.org/10.1098/rsos.150406 Text en http://creativecommons.org/licenses/by/4.0/ © 2016 The Authors. Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Physics
Száz, Dénes
Farkas, Alexandra
Blahó, Miklós
Barta, András
Egri, Ádám
Kretzer, Balázs
Hegedüs, Tibor
Jäger, Zoltán
Horváth, Gábor
Adjustment errors of sunstones in the first step of sky-polarimetric Viking navigation: studies with dichroic cordierite/ tourmaline and birefringent calcite crystals
title Adjustment errors of sunstones in the first step of sky-polarimetric Viking navigation: studies with dichroic cordierite/ tourmaline and birefringent calcite crystals
title_full Adjustment errors of sunstones in the first step of sky-polarimetric Viking navigation: studies with dichroic cordierite/ tourmaline and birefringent calcite crystals
title_fullStr Adjustment errors of sunstones in the first step of sky-polarimetric Viking navigation: studies with dichroic cordierite/ tourmaline and birefringent calcite crystals
title_full_unstemmed Adjustment errors of sunstones in the first step of sky-polarimetric Viking navigation: studies with dichroic cordierite/ tourmaline and birefringent calcite crystals
title_short Adjustment errors of sunstones in the first step of sky-polarimetric Viking navigation: studies with dichroic cordierite/ tourmaline and birefringent calcite crystals
title_sort adjustment errors of sunstones in the first step of sky-polarimetric viking navigation: studies with dichroic cordierite/ tourmaline and birefringent calcite crystals
topic Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4736922/
https://www.ncbi.nlm.nih.gov/pubmed/26909167
http://dx.doi.org/10.1098/rsos.150406
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