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This project implements a diffusion–reaction model developed by Ylilammi et al. (J. Appl. Phys. 123, 205301 (2018), DOI: 10.1063/1.5028178) in MATLAB. The model was developed to simulate the conformality of atomic layer deposited films in high-aspect-ratio microchannels. The output of the model, thickness profiles, show how the film thickness evolves with penetration into the microchannel. This diffusion–reaction model uses an analytical approximation of the reactant partial pressure in combination with the Langmuir model of adsorption. The scripts were written by Emma Verkama during her summer student employment in 2019 by request of Prof. Riikka Puurunen. Jihong Yim unified the variable names used in the scripts with the symbols adopted in Yim et al. (Phys. Chem. Chem. Phys. 24, 8645-8660 (2022), DOI: 10.1039/D1CP04758B). The publication of the scripts was handled by Jänis Järvilehto. 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This dataset has been published as Figure 4 in the publication \"Conformality of atomic layer deposition in microchannels: impact of process parameters on the simulated thickness profile\" (Yim and Verkama et al., Phys. Chem. Chem. Phys. 24 (2022) 8645-8660. https://doi.org/10.1039/D1CP04758B). A diffusion-reaction model by Ylilammi et al. (Ylilammi et al., J. Appl. Phys. 123 (2018) 205301. https://doi.org/10.1063/1.5028178) was re-implemented for the simulation. For this simulation, a channel height of 500 nm, which is a typical height for microscopic PillarHallTM LHAR test chips (Yim and Ylivaara et al., Phys. Chem. Chem. Phys., 22 (2020) 23107-23120. https://doi.org/10.1039/D0CP03358H), was used. The Excel file consists of 11 tabs in total: metadata, baseline thickness profile, and Fig4a to Fig4i. The baseline thickness profile and data of fig4a Fig4i are also available as a CSV file. The metadata page describes the data with its baseline conditions. The baseline conditions used in the simulation are: sticking coefficient = 0.01, temperature = 250 °C, initial partial pressure of Reactant A = 100 Pa, molar mass of Reactant A = 0.100 kg mol-1, hard-sphere diameter of Reactant A = 6 × 10-10 m, partial pressure of inert gas I = 500 Pa, molar mass of inert gas I = 0.028 kg mol-1, hard-sphere diameter of inert gas I = 3.74 × 10-10 m, mass density of deposited film = 3500 kg m-3, areal number density of metal M atoms in MyZx material = 4 nm-2, number of metal atoms in a Reactant A molecule = 1, number of metal atoms in a formula unit of growing film = 1, number of cycle = 250, desorption probability = 0.01 s-1, channel height = 500 nm, and channel width = 10 mm. The baseline thickness profile tab contains a thickness profile obtained in the baseline conditions as film thickness versus distance within a microchannel. The thickness profile stored from Fig4a to Fig4i tabs was obtained by varying individual parameters with other parameter values in baseline conditions: initial partial pressure of Reactant A (Fig4a), pulse time (Fig4b), molar mass of Reactant A (Fig4c), mass density of deposited film (Fig4d), adsorption density (Fig4e), desorption probability (Fig4f), sticking coefficient (Fig4g), temperature (Fig4h) and partial pressure of inert gas (Fig4i)."},"field_of_science":[{"id":"b6d4a4d0-aeab-46fc-bc18-9e4121cb189e","url":"http://www.yso.fi/onto/okm-tieteenala/ta116","in_scheme":"http://www.yso.fi/onto/okm-tieteenala/conceptscheme","pref_label":{"en":"Chemical 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Data is provided for 13 tide gauge locations and 3 emission scenarios: low (RCP2.6 / SSP1-2.6), medium (RCP4.5 / SSP2-4.5), and high (RCP8.5 / SSP5-8.5).\r\n\r\nThere are two data packages, distributions.zip and timeseries.zip. The data files included in these packages are tab- or space-delimited text files with the file extension .dat.\r\n\r\nAll filenames start with a three-character code xxx that determines the tide gauge (1-letter symbol) and the emission scenario (2 digits). For example:\r\n\r\nv26 means Vaasa, low emission scenario (RCP2.6 / SSP1-2.6)\r\ne45 means Helsinki, medium emission scenario (RCP4.5 / SSP2-4.5)\r\nt85 means Turku, high emission scenario (RCP8.5 / SSP5-8.5)\r\n\r\nThe letter symbols and locations of the tide gauges are, from north to south along the coast:\r\n\r\na - Kemi (65.67 N, 24.52 E)\r\no - Oulu (65.04 N, 25.42 E)\r\nb - Raahe (64.67 N, 24.41 E)\r\np - Pietarsaari (63.71 N, 22.69 E)\r\nv - Vaasa (63.08 N, 21.57 E)\r\ns - Kaskinen (62.34 N, 21.21 E)\r\nm - Mäntyluoto (61.59 N, 21.46 E)\r\nr - Rauma (61.13 N, 21.44 E)\r\nt - Turku (60.43 N, 22.1 E)\r\nd - Degerby (60.03 N, 20.38 E)\r\nh - Hanko (59.82 N, 22.98 E)\r\ne - Helsinki (60.15 N, 24.96 E)\r\nf - Hamina (60.56 N, 27.18 E)\r\n\r\n1) distributions.zip > xxx_fitdistr_yyyy.dat\r\nThese files include the probability distribution (probability density function) of projected mean sea level in year yyyy (2030, 2040, ... 2100). There are two columns: sea level and probability. Sea level values are millimetres in the Finnish N2000 height system.\r\n\r\n2) timeseries.zip > xxx_timeseries.dat\r\nThese files include the time series of projected mean sea level in 2005-2100. The files have 8 columns: year and 7 sea level values representing different percentiles of the probability distribution. The percentiles are 1%, 5%, 17%, 50% (median), 83%, 95%, 99%. Sea level values are centimetres in the Finnish N2000 height system.\r\n\r\nPlease note that all projections for years other than 2100 are indicative and based on a simple 2nd order fit made to the current rate of mean sea level change and the projected mean sea level in 2100. In other words, the projections for intermediate years are based on the 2100 projections assuming constant acceleration in mean sea level change rates.\r\n\r\nExample figures distributions.png and timeseries.png are included to illustrate the data. 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All dose values are rounded according to their uncertainty."},"field_of_science":[{"id":"8aaa6f8d-a5ad-4a23-8d26-1d76c279e2f8","url":"http://www.yso.fi/onto/okm-tieteenala/ta115","in_scheme":"http://www.yso.fi/onto/okm-tieteenala/conceptscheme","pref_label":{"en":"Astronomy, Space science","fi":"Avaruustieteet ja tähtitiede","sv":"Rymdvetenskap och astronomi"}}],"infrastructure":[],"issued":"1970-01-01","keyword":[],"language":[],"metadata_owner":{"id":"829302c3-f5d4-4d20-9ec3-5148bcf385cc","organization":"aalto.fi","admin_organization":"aalto.fi"},"other_identifiers":[],"persistent_identifier":"doi:10.5281/zenodo.7613014","pid_generated_by_fairdata":false,"projects":[],"provenance":[],"relation":[],"remote_resources":[{"title":{"en":"Data in remote location","fi":"Aineisto ulkoisessa palvelussa","sv":"Material i en extern tjänst","und":"Data in remote location"},"use_category":{"id":"1ad1b146-d147-45db-a2fd-1096abc94984","url":"http://uri.suomi.fi/codelist/fairdata/use_category/code/source","in_scheme":"http://uri.suomi.fi/codelist/fairdata/use_category","pref_label":{"en":"Source material","fi":"Lähdeaineisto"}},"download_url":"https://zenodo.org/record/7616012"}],"spatial":[],"state":"published","temporal":[],"theme":[],"title":{"en":"Shielding performance of the 98 first chemical elements against trapped particles on GTO"},"created":"2025-12-04T08:02:46Z","modified":"2026-03-26T06:46:05Z","dataset_versions":[{"id":"2657467f-64d3-4a81-9868-5fba25168ddc","title":{"en":"Shielding performance of the 98 first chemical elements against trapped particles on GTO"},"persistent_identifier":"doi:10.5281/zenodo.7613014","state":"published","created":"2025-12-04T08:02:46Z","version":1}],"published_revision":2,"version":1,"api_version":3,"metadata_repository":"Fairdata"},{"id":"2586b8c2-8d20-4b3f-9c8f-d703ec5b4f8d","access_rights":{"id":"8e0c150e-ada2-426d-972e-0f2f7af5103e","license":[{"id":"add72c17-4fca-4d00-a2c7-b849c424c42f","url":"http://uri.suomi.fi/codelist/fairdata/license/code/CC-BY-4.0","in_scheme":"http://uri.suomi.fi/codelist/fairdata/license","pref_label":{"en":"Creative Commons Attribution 4.0 International (CC BY 4.0)","fi":"Creative Commons Nimeä 4.0 Kansainvälinen (CC BY 4.0)"}}],"access_type":{"id":"b41462f7-00bf-4e50-935b-2bf1184453a7","url":"http://uri.suomi.fi/codelist/fairdata/access_type/code/open","in_scheme":"http://uri.suomi.fi/codelist/fairdata/access_type","pref_label":{"en":"Open","fi":"Avoin"}},"restriction_grounds":[]},"actors":[{"id":"f8c75614-0c57-42fb-b071-1eefb67eaae2","roles":["creator"],"person":{"id":"346194eb-887c-4be2-9732-af3b553dc29e","name":"Anton Fetzer","external_identifier":"https://orcid.org/0000-0002-4937-8122"},"organization":{"id":"074f7cb3-f195-4a56-aa42-d926c1e11020","pref_label":{"en":"Department of Electronics and Nanoengineering","fi":"Department of Electronics and Nanoengineering","sv":"Department of Electronics and Nanoengineering","und":"Department of Electronics and Nanoengineering"},"url":"http://uri.suomi.fi/codelist/fairdata/organization/code/10076-T411","in_scheme":"http://uri.suomi.fi/codelist/fairdata/organization","parent":{"id":"2f9f9011-4061-4a93-96af-768471abada7","pref_label":{"en":"Aalto University","fi":"Aalto-yliopisto","sv":"Aalto-universitetet","und":"Aalto-yliopisto"},"url":"http://uri.suomi.fi/codelist/fairdata/organization/code/10076","in_scheme":"http://uri.suomi.fi/codelist/fairdata/organization"}}},{"id":"c26839ad-479a-4c32-8b5e-01b2c4f1d05f","roles":["publisher"],"organization":{"id":"a59b5b80-afc5-4b74-a442-6d3a7a79bbf9","pref_label":{"en":"Zenodo","fi":"Zenodo","sv":"Zenodo"}}}],"cumulative_state":0,"data_catalog":"urn:nbn:fi:att:data-catalog-acris","description":{"en":"The 5Layer.csv file contains ionizing dose results of simulating the shielding performance of all 1024 five-layer permutations of four satellite and radiation shielding materials against trapped particles on GTO. The materials are the aluminium alloy 7075 (Al_7075), polyethylene (G4_POLYETHYLENE), tungsten (G4_W) and the circuit board composite material FR4 (FR4). The particle spectra used for this simulation are provided in the files AE9500keV.mac and AP910MeV.mac. The simulated geometry is provided in the file 5Layer.gdml. The particle spectra were generated with the AE9/AP9 models on SPENVIS, with electron energies starting at 500 keV and proton energies starting at 10 MeV. The simulation was performed with GRAS / Geant4 with the FTFP_BERT physics model using 1.4e+11 electrons and 3.1e+09 protons directed against slabs of shielding materials of 1.5 g/cm2 total depth with each of the five layers being 0.3 g/cm2 in depth. The ionizing dose is recorded in 0.5mm thick silicon plates behind the shielding plates. Column A: ID of the material combination Column B: Name of the top layer material. Column C: Name of the second layer material. Column D: Name of the third layer material. Column E: Name of the fourth layer material. Column F: Name of the bottom layer material. Column G: Ionizing dose due to electrons in units of kRad per month. Column H: Absolute statistical error in the electron dose in kRad per month. Column I: Ionizing dose due to protons in kRad per month. Column J: Absolute statistical error in the proton dose in kRad per month. Column K: Total ionizing dose from electrons and protons in kRad per month. Column L: Absolute statistical error in the total ionizing dose in kRad per month. Column M: Relative statistical error of the total ionizing dose in per cent. Column N: Rank of the material combination sorted from lowest total ionizing dose to highest. Column O: Rank of the material combination sorted from lowest electron dose to highest. Column P: Rank of the material combination sorted from lowest proton dose to highest. All dose values are rounded according to their uncertainty."},"field_of_science":[{"id":"8aaa6f8d-a5ad-4a23-8d26-1d76c279e2f8","url":"http://www.yso.fi/onto/okm-tieteenala/ta115","in_scheme":"http://www.yso.fi/onto/okm-tieteenala/conceptscheme","pref_label":{"en":"Astronomy, Space science","fi":"Avaruustieteet ja tähtitiede","sv":"Rymdvetenskap och astronomi"}}],"infrastructure":[],"issued":"1970-01-01","keyword":[],"language":[],"metadata_owner":{"id":"829302c3-f5d4-4d20-9ec3-5148bcf385cc","organization":"aalto.fi","admin_organization":"aalto.fi"},"other_identifiers":[],"persistent_identifier":"doi:10.5281/zenodo.7622158","pid_generated_by_fairdata":false,"projects":[],"provenance":[],"relation":[],"remote_resources":[{"title":{"en":"Data in remote location","fi":"Aineisto ulkoisessa palvelussa","sv":"Material i en extern tjänst","und":"Data in remote location"},"use_category":{"id":"1ad1b146-d147-45db-a2fd-1096abc94984","url":"http://uri.suomi.fi/codelist/fairdata/use_category/code/source","in_scheme":"http://uri.suomi.fi/codelist/fairdata/use_category","pref_label":{"en":"Source material","fi":"Lähdeaineisto"}},"download_url":"https://zenodo.org/record/7622159"}],"spatial":[],"state":"published","temporal":[],"theme":[],"title":{"en":"Simulated shielding performance of 1024 five-layer permutations of four satellite and radiation shielding materials against trapped particles on GTO"},"created":"2025-12-04T08:02:44Z","modified":"2026-03-26T06:46:03Z","dataset_versions":[{"id":"2586b8c2-8d20-4b3f-9c8f-d703ec5b4f8d","title":{"en":"Simulated shielding performance of 1024 five-layer permutations of four satellite and radiation shielding materials against trapped particles on GTO"},"persistent_identifier":"doi:10.5281/zenodo.7622158","state":"published","created":"2025-12-04T08:02:44Z","version":1}],"published_revision":2,"version":1,"api_version":3,"metadata_repository":"Fairdata"},{"id":"0c60aed4-f0cb-4e88-9ae4-c00f580fda18","access_rights":{"id":"38e477af-b99a-4291-92dc-9995f3245385","license":[{"id":"add72c17-4fca-4d00-a2c7-b849c424c42f","url":"http://uri.suomi.fi/codelist/fairdata/license/code/CC-BY-4.0","in_scheme":"http://uri.suomi.fi/codelist/fairdata/license","pref_label":{"en":"Creative Commons Attribution 4.0 International (CC BY 4.0)","fi":"Creative Commons Nimeä 4.0 Kansainvälinen (CC BY 4.0)"}}],"access_type":{"id":"b41462f7-00bf-4e50-935b-2bf1184453a7","url":"http://uri.suomi.fi/codelist/fairdata/access_type/code/open","in_scheme":"http://uri.suomi.fi/codelist/fairdata/access_type","pref_label":{"en":"Open","fi":"Avoin"}},"restriction_grounds":[]},"actors":[{"id":"5b69e306-da48-485e-89b6-2fae92f9be02","roles":["creator"],"person":{"id":"2f95db69-d7ed-45a3-a191-2e224acbad4f","name":"Anton Fetzer","external_identifier":"https://orcid.org/0000-0002-4937-8122"},"organization":{"id":"074f7cb3-f195-4a56-aa42-d926c1e11020","pref_label":{"en":"Department of Electronics and Nanoengineering","fi":"Department of Electronics and Nanoengineering","sv":"Department of Electronics and Nanoengineering","und":"Department of Electronics and Nanoengineering"},"url":"http://uri.suomi.fi/codelist/fairdata/organization/code/10076-T411","in_scheme":"http://uri.suomi.fi/codelist/fairdata/organization","parent":{"id":"2f9f9011-4061-4a93-96af-768471abada7","pref_label":{"en":"Aalto University","fi":"Aalto-yliopisto","sv":"Aalto-universitetet","und":"Aalto-yliopisto"},"url":"http://uri.suomi.fi/codelist/fairdata/organization/code/10076","in_scheme":"http://uri.suomi.fi/codelist/fairdata/organization"}}},{"id":"188a7243-946a-4050-bf99-dacc5fc57400","roles":["publisher"],"organization":{"id":"6d682b79-f9a3-40d0-a68c-c10e74845050","pref_label":{"en":"Zenodo","fi":"Zenodo","sv":"Zenodo"}}}],"cumulative_state":0,"data_catalog":"urn:nbn:fi:att:data-catalog-acris","description":{"en":"The 3Layer.csv file contains ionizing dose results of simulating the shielding performance of all 1728 three-layer permutations of twelve common satellite and radiation shielding materials against trapped particles on GTO. The materials are pure aluminium (G4_Al), the aluminium alloy 7075 (Al_7075), polyethylene (G4_POLYETHYLENE), kevlar (G4_KEVLAR), lead (G4_Pb), tungsten (G4_W), stainless steel (G4_STAINLESS_STEEL), pure carbon fibre (CarbonFibre), the circuit board composite material FR4 (FR4), tantalum (G4_Ta), Teflon (G4_TEFLON) and the titanium alloy 6Al-4V (Ti_6AL_4V). The particle spectra used for this simulation are provided in the files AE9500keV.mac and AP910MeV.mac. The simulated geometry is provided in the file 3Layer.gdml. The particle spectra were generated with the AE9/AP9 models on SPENVIS, with electron energies starting at 500 keV and proton energies starting at 10 MeV. The simulation was performed with GRAS / Geant4 with the FTFP_BERT physics model using 3.9e+10 electrons and 4.7e+09 protons directed against slabs of shielding materials of 1.5 g/cm2 total depth with each of the three layers being 0.5 g/cm2 in depth. The ionizing dose is recorded in 0.5mm thick silicon plates behind the shielding plates. Column A: ID of the material combination Column B: Name of the top layer material. Column C: Name of the middle layer material. Column D: Name of the bottom layer material. Column E: Ionizing dose due to electrons in units of kRad per month. Column F: Absolute statistical error in the electron dose in kRad per month. Column G: ionizing dose due to protons in kRad per month. Column H: Absolute statistical error in the proton dose in kRad per month. Column I: Total ionizing dose from electrons and protons in kRad per month. Column J: Absolute statistical error in the total ionizing dose in kRad per month. Column K: Relative statistical error of the total ionizing dose in per cent. Column L: Rank of the material combination sorted from lowest total ionizing dose to highest. Column M: Rank of the material combination sorted from lowest electron dose to highest. Column N: Rank of the material combination sorted from lowest proton dose to highest. All dose values are rounded according to their uncertainty."},"field_of_science":[{"id":"8aaa6f8d-a5ad-4a23-8d26-1d76c279e2f8","url":"http://www.yso.fi/onto/okm-tieteenala/ta115","in_scheme":"http://www.yso.fi/onto/okm-tieteenala/conceptscheme","pref_label":{"en":"Astronomy, Space science","fi":"Avaruustieteet ja tähtitiede","sv":"Rymdvetenskap och astronomi"}}],"infrastructure":[],"issued":"1970-01-01","keyword":[],"language":[],"metadata_owner":{"id":"829302c3-f5d4-4d20-9ec3-5148bcf385cc","organization":"aalto.fi","admin_organization":"aalto.fi"},"other_identifiers":[],"persistent_identifier":"doi:10.5281/zenodo.7620702","pid_generated_by_fairdata":false,"projects":[],"provenance":[],"relation":[],"remote_resources":[{"title":{"en":"Data in remote location","fi":"Aineisto ulkoisessa palvelussa","sv":"Material i en extern tjänst","und":"Data in remote location"},"use_category":{"id":"1ad1b146-d147-45db-a2fd-1096abc94984","url":"http://uri.suomi.fi/codelist/fairdata/use_category/code/source","in_scheme":"http://uri.suomi.fi/codelist/fairdata/use_category","pref_label":{"en":"Source material","fi":"Lähdeaineisto"}},"download_url":"https://zenodo.org/record/7620703"}],"spatial":[],"state":"published","temporal":[],"theme":[],"title":{"en":"Simulated shielding performance of 1728 three-layer permutations of 12 common satellite and radiation shielding materials against trapped particles on GTO"},"created":"2025-12-04T08:02:42Z","modified":"2026-03-26T06:46:01Z","dataset_versions":[{"id":"0c60aed4-f0cb-4e88-9ae4-c00f580fda18","title":{"en":"Simulated shielding performance of 1728 three-layer permutations of 12 common satellite and radiation shielding materials against trapped particles on GTO"},"persistent_identifier":"doi:10.5281/zenodo.7620702","state":"published","created":"2025-12-04T08:02:42Z","version":1}],"published_revision":2,"version":1,"api_version":3,"metadata_repository":"Fairdata"},{"id":"01052fe1-bc50-4ca3-a7e2-27f65bbb7f49","access_rights":{"id":"c3e8da3a-12c8-4cf6-a1a8-b7f043079e03","license":[{"id":"add72c17-4fca-4d00-a2c7-b849c424c42f","url":"http://uri.suomi.fi/codelist/fairdata/license/code/CC-BY-4.0","in_scheme":"http://uri.suomi.fi/codelist/fairdata/license","pref_label":{"en":"Creative Commons Attribution 4.0 International (CC BY 4.0)","fi":"Creative Commons Nimeä 4.0 Kansainvälinen (CC BY 4.0)"}}],"access_type":{"id":"b41462f7-00bf-4e50-935b-2bf1184453a7","url":"http://uri.suomi.fi/codelist/fairdata/access_type/code/open","in_scheme":"http://uri.suomi.fi/codelist/fairdata/access_type","pref_label":{"en":"Open","fi":"Avoin"}},"restriction_grounds":[]},"actors":[{"id":"a69f0e9e-a38d-41f0-b36b-ca326c05d570","roles":["creator"],"person":{"id":"ab76b7e1-7870-4866-b79e-c141a683fa8d","name":"Anton Fetzer","external_identifier":"https://orcid.org/0000-0002-4937-8122"},"organization":{"id":"f3ddef9c-97f0-4afd-944a-fb808b753727","pref_label":{"en":"School common, ELEC","fi":"School common, ELEC","sv":"School common, ELEC","und":"School common, ELEC"},"url":"http://uri.suomi.fi/codelist/fairdata/organization/code/10076-T499","in_scheme":"http://uri.suomi.fi/codelist/fairdata/organization","parent":{"id":"2f9f9011-4061-4a93-96af-768471abada7","pref_label":{"en":"Aalto University","fi":"Aalto-yliopisto","sv":"Aalto-universitetet","und":"Aalto-yliopisto"},"url":"http://uri.suomi.fi/codelist/fairdata/organization/code/10076","in_scheme":"http://uri.suomi.fi/codelist/fairdata/organization"}}},{"id":"fb2aa01b-0a51-45a6-87da-27d3d47ce548","roles":["publisher"],"organization":{"id":"b0ee450f-b6ae-450e-8a4f-4e6695021d2e","pref_label":{"en":"Zenodo","fi":"Zenodo","sv":"Zenodo"}}}],"cumulative_state":0,"data_catalog":"urn:nbn:fi:att:data-catalog-acris","description":{"en":"The 4Layer.csv file contains ionizing dose results of simulating the shielding performance of all 1296 four-layer permutations of six common satellite and radiation shielding materials against trapped particles on GTO. The materials are the aluminium alloy 7075 (Al_7075), polyethylene (G4_POLYETHYLENE), kevlar (G4_KEVLAR), tungsten (G4_W), stainless steel (G4_STAINLESS_STEEL) and the circuit board composite material FR4 (FR4). The particle spectra used for this simulation are provided in the files AE9500keV.mac and AP910MeV.mac. The simulated geometry is provided in the file 4Layer.gdml. The particle spectra were generated with the AE9/AP9 models on SPENVIS, with electron energies starting at 500 keV and proton energies starting at 10 MeV. The simulation was performed with GRAS / Geant4 with the FTFP_BERT physics model using 6.6e+10 electrons and 3.8e+09 protons directed against slabs of shielding materials of 1.5 g/cm2 total depth with each of the four layers being 0.375 g/cm2 in depth. The ionizing dose is recorded in 0.5mm thick silicon plates behind the shielding plates. Column A: ID of the material combination Column B: Name of the top layer material. Column C: Name of the second layer material. Column D: Name of the third layer material. Column E: Name of the bottom layer material. Column F: Ionizing dose due to electrons in units of kRad per month. Column G: Absolute statistical error in the electron dose in kRad per month. Column H: Ionizing dose due to protons in kRad per month. Column I: Absolute statistical error in the proton dose in kRad per month. Column J: Total ionizing dose from electrons and protons in kRad per month. Column K: Absolute statistical error in the total ionizing dose in kRad per month. Column L: Relative statistical error of the total ionizing dose in per cent. Column M: Rank of the material combination sorted from lowest total ionizing dose to highest. Column N: Rank of the material combination sorted from lowest electron dose to highest. Column O: Rank of the material combination sorted from lowest proton dose to highest. All dose values are rounded according to their uncertainty."},"field_of_science":[{"id":"8aaa6f8d-a5ad-4a23-8d26-1d76c279e2f8","url":"http://www.yso.fi/onto/okm-tieteenala/ta115","in_scheme":"http://www.yso.fi/onto/okm-tieteenala/conceptscheme","pref_label":{"en":"Astronomy, Space science","fi":"Avaruustieteet ja tähtitiede","sv":"Rymdvetenskap och astronomi"}}],"infrastructure":[],"issued":"1970-01-01","keyword":[],"language":[],"metadata_owner":{"id":"829302c3-f5d4-4d20-9ec3-5148bcf385cc","organization":"aalto.fi","admin_organization":"aalto.fi"},"other_identifiers":[],"persistent_identifier":"doi:10.5281/zenodo.7621280","pid_generated_by_fairdata":false,"projects":[],"provenance":[],"relation":[],"remote_resources":[{"title":{"en":"Data in remote location","fi":"Aineisto ulkoisessa palvelussa","sv":"Material i en extern tjänst","und":"Data in remote location"},"use_category":{"id":"1ad1b146-d147-45db-a2fd-1096abc94984","url":"http://uri.suomi.fi/codelist/fairdata/use_category/code/source","in_scheme":"http://uri.suomi.fi/codelist/fairdata/use_category","pref_label":{"en":"Source material","fi":"Lähdeaineisto"}},"download_url":"https://zenodo.org/record/7621281"}],"spatial":[],"state":"published","temporal":[],"theme":[],"title":{"en":"Simulated shielding performance of 1296 four-layer permutations of six common satellite and radiation shielding materials against trapped particles on GTO"},"created":"2025-12-04T08:02:40Z","modified":"2026-03-26T06:45:58Z","dataset_versions":[{"id":"01052fe1-bc50-4ca3-a7e2-27f65bbb7f49","title":{"en":"Simulated shielding performance of 1296 four-layer permutations of six common satellite and radiation shielding materials against trapped particles on GTO"},"persistent_identifier":"doi:10.5281/zenodo.7621280","state":"published","created":"2025-12-04T08:02:40Z","version":1}],"published_revision":2,"version":1,"api_version":3,"metadata_repository":"Fairdata"}]}