2D GENUS TOPOLOGY OF 21-CM DIFFERENTIAL BRIGHTNESS TEMPERATURE DURING COSMIC REIONIZATION
A novel method to characterize the topology of the early-universe intergalactic medium during the epoch of cosmic reionization is presented. The 21-cm radiation background from high redshift is analyzed through calculation of the 2-dimensional (2D) genus. The radiative transfer of hydrogenionizing p...
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| Published in | Journal of the Korean Astronomical Society Vol. 47; no. 2; pp. 49 - 67 |
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| Main Authors | , , , , , |
| Format | Journal Article |
| Language | English |
| Published |
한국천문학회
30.04.2014
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| Subjects | |
| Online Access | Get full text |
| ISSN | 1225-4614 2288-890X |
| DOI | 10.5303/JKAS.2014.47.2.49 |
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| Abstract | A novel method to characterize the topology of the early-universe intergalactic medium during the epoch of cosmic reionization is presented. The 21-cm radiation background from high redshift is analyzed through calculation of the 2-dimensional (2D) genus. The radiative transfer of hydrogenionizing photons and ionization-rate equations are calculated in a suite of numerical simulations under various input parameters. The 2D genus is calculated from the mock 21-cm images of high-redshift universe. We construct the 2D genus curve by varying the threshold differential brightness temperature, and compare this to the 2D genus curve of the underlying density field. We find that (1) the 2D genus curve reflects the evolutionary track of cosmic reionization and (2) the 2D genus curve can discriminate between certain reionization scenarios and thus indirectly probe the properties of radiation-sources. Choosing the right beam shape of a radio antenna is found crucial for this analysis. Square Kilometre Array (SKA) is found to be a suitable apparatus for this analysis in terms of sensitivity, even though some deterioration of the data for this purpose is unavoidable under the planned size of the antenna core. |
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| AbstractList | A novel method to characterize the topology of the early-universe intergalactic medium during the epoch of cosmic reionization is presented. The 21-cm radiation background from high redshift is analyzed through calculation of the 2-dimensional (2D) genus. The radiative transfer of hydrogenionizing photons and ionization-rate equations are calculated in a suite of numerical simulations under various input parameters. The 2D genus is calculated from the mock 21-cm images of high-redshift universe. We construct the 2D genus curve by varying the threshold differential brightness temperature, and compare this to the 2D genus curve of the underlying density field. We find that (1) the 2D genus curve reflects the evolutionary track of cosmic reionization and (2) the 2D genus curve can discriminate between certain reionization scenarios and thus indirectly probe the properties of radiation-sources. Choosing the right beam shape of a radio antenna is found crucial for this analysis. Square Kilometre Array (SKA) is found to be a suitable apparatus for this analysis in terms of sensitivity, even though some deterioration of the data for this purpose is unavoidable under the planned size of the antenna core. A novel method to characterize the topology of the early-universe intergalactic medium during the epoch of cosmic reionization is presented. The 21-cm radiation background from high redshift is analyzed through calculation of the 2-dimensional (2D) genus. The radiative transfer of hydrogen-ionizing photons and ionization-rate equations are calculated in a suite of numerical simulations under various input parameters. The 2D genus is calculated from the mock 21-cm images of high-redshift universe. We construct the 2D genus curve by varying the threshold differential brightness temperature, and compare this to the 2D genus curve of the underlying density field. We find that (1) the 2D genus curve reflects the evolutionary track of cosmic reionization and (2) the 2D genus curve can discriminate between certain reionization scenarios and thus indirectly probe the properties of radiation-sources. Choosing the right beam shape of a radio antenna is found crucial for this analysis. Square Kilometre Array (SKA) is found to be a suitable apparatus for this analysis in terms of sensitivity, even though some deterioration of the data for this purpose is unavoidable under the planned size of the antenna core. KCI Citation Count: 17 |
| Author | Hong, Sungwook E. Iliev, Ilian T. Mellema, Garrelt Ahn, Kyungjin Kim, Juhan Park, Changbom |
| Author_xml | – sequence: 1 givenname: Sungwook E. surname: Hong fullname: Hong, Sungwook E. – sequence: 2 givenname: Kyungjin surname: Ahn fullname: Ahn, Kyungjin – sequence: 3 givenname: Changbom surname: Park fullname: Park, Changbom – sequence: 4 givenname: Juhan surname: Kim fullname: Kim, Juhan – sequence: 5 givenname: Ilian T. surname: Iliev fullname: Iliev, Ilian T. – sequence: 6 givenname: Garrelt surname: Mellema fullname: Mellema, Garrelt organization: Oskar Klein-centrum för kosmopartikelfysik (OKC) |
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| SubjectTerms | cosmology: observations cosmology: theory intergalactic medium large-scale structure of universe methods: statistical radiative transfer 천문학 |
| Title | 2D GENUS TOPOLOGY OF 21-CM DIFFERENTIAL BRIGHTNESS TEMPERATURE DURING COSMIC REIONIZATION |
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