Skip to content

Commit

Permalink
Merge pull request #5469 from openjournals/joss.06860
Browse files Browse the repository at this point in the history
Merging automatically
  • Loading branch information
editorialbot authored Jun 8, 2024
2 parents a90adb8 + b6c4b72 commit 24f47c1
Show file tree
Hide file tree
Showing 4 changed files with 1,029 additions and 0 deletions.
383 changes: 383 additions & 0 deletions joss.06860/10.21105.joss.06860.crossref.xml
Original file line number Diff line number Diff line change
@@ -0,0 +1,383 @@
<?xml version="1.0" encoding="UTF-8"?>
<doi_batch xmlns="http://www.crossref.org/schema/5.3.1"
xmlns:ai="http://www.crossref.org/AccessIndicators.xsd"
xmlns:rel="http://www.crossref.org/relations.xsd"
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
version="5.3.1"
xsi:schemaLocation="http://www.crossref.org/schema/5.3.1 http://www.crossref.org/schemas/crossref5.3.1.xsd">
<head>
<doi_batch_id>20240608125359-206f3f9f6e9b9781a9f861e32c3fbaf9944a77ac</doi_batch_id>
<timestamp>20240608125359</timestamp>
<depositor>
<depositor_name>JOSS Admin</depositor_name>
<email_address>[email protected]</email_address>
</depositor>
<registrant>The Open Journal</registrant>
</head>
<body>
<journal>
<journal_metadata>
<full_title>Journal of Open Source Software</full_title>
<abbrev_title>JOSS</abbrev_title>
<issn media_type="electronic">2475-9066</issn>
<doi_data>
<doi>10.21105/joss</doi>
<resource>https://joss.theoj.org</resource>
</doi_data>
</journal_metadata>
<journal_issue>
<publication_date media_type="online">
<month>06</month>
<year>2024</year>
</publication_date>
<journal_volume>
<volume>9</volume>
</journal_volume>
<issue>98</issue>
</journal_issue>
<journal_article publication_type="full_text">
<titles>
<title>MARTINI: Mock Array Radio Telescope Interferometry of
the Neutral ISM</title>
</titles>
<contributors>
<person_name sequence="first" contributor_role="author">
<given_name>Kyle A.</given_name>
<surname>Oman</surname>
<ORCID>https://orcid.org/0000-0001-9857-7788</ORCID>
</person_name>
</contributors>
<publication_date>
<month>06</month>
<day>08</day>
<year>2024</year>
</publication_date>
<pages>
<first_page>6860</first_page>
</pages>
<publisher_item>
<identifier id_type="doi">10.21105/joss.06860</identifier>
</publisher_item>
<ai:program name="AccessIndicators">
<ai:license_ref applies_to="vor">http://creativecommons.org/licenses/by/4.0/</ai:license_ref>
<ai:license_ref applies_to="am">http://creativecommons.org/licenses/by/4.0/</ai:license_ref>
<ai:license_ref applies_to="tdm">http://creativecommons.org/licenses/by/4.0/</ai:license_ref>
</ai:program>
<rel:program>
<rel:related_item>
<rel:description>Software archive</rel:description>
<rel:inter_work_relation relationship-type="references" identifier-type="doi">10.5281/zenodo.11198185</rel:inter_work_relation>
</rel:related_item>
<rel:related_item>
<rel:description>GitHub review issue</rel:description>
<rel:inter_work_relation relationship-type="hasReview" identifier-type="uri">https://github.com/openjournals/joss-reviews/issues/6860</rel:inter_work_relation>
</rel:related_item>
</rel:program>
<doi_data>
<doi>10.21105/joss.06860</doi>
<resource>https://joss.theoj.org/papers/10.21105/joss.06860</resource>
<collection property="text-mining">
<item>
<resource mime_type="application/pdf">https://joss.theoj.org/papers/10.21105/joss.06860.pdf</resource>
</item>
</collection>
</doi_data>
<citation_list>
<citation key="Schaye2015">
<article_title>The EAGLE project: simulating the evolution
and assembly of galaxies and their environments</article_title>
<author>Schaye</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>1</issue>
<volume>446</volume>
<doi>10.1093/mnras/stu2058</doi>
<cYear>2015</cYear>
<unstructured_citation>Schaye, J., Crain, R. A., Bower, R.
G., Furlong, M., Schaller, M., Theuns, T., Dalla Vecchia, C., Frenk, C.
S., McCarthy, I. G., Helly, J. C., Jenkins, A., Rosas-Guevara, Y. M.,
White, S. D. M., Baes, M., Booth, C. M., Camps, P., Navarro, J. F., Qu,
Y., Rahmati, A., … Trayford, J. (2015). The EAGLE project: simulating
the evolution and assembly of galaxies and their environments. Monthly
Notices of the Royal Astronomical Society, 446(1), 521–554.
https://doi.org/10.1093/mnras/stu2058</unstructured_citation>
</citation>
<citation key="Vogelsberger2014">
<article_title>Introducing the Illustris Project: simulating
the coevolution of dark and visible matter in the
Universe</article_title>
<author>Vogelsberger</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>2</issue>
<volume>444</volume>
<doi>10.1093/mnras/stu1536</doi>
<cYear>2014</cYear>
<unstructured_citation>Vogelsberger, M., Genel, S.,
Springel, V., Torrey, P., Sijacki, D., Xu, D., Snyder, G., Nelson, D.,
&amp; Hernquist, L. (2014). Introducing the Illustris Project:
simulating the coevolution of dark and visible matter in the Universe.
Monthly Notices of the Royal Astronomical Society, 444(2), 1518–1547.
https://doi.org/10.1093/mnras/stu1536</unstructured_citation>
</citation>
<citation key="Lucy1977">
<article_title>A numerical approach to the testing of the
fission hypothesis.</article_title>
<author>Lucy</author>
<journal_title>The Astronomical Journal</journal_title>
<volume>82</volume>
<doi>10.1086/112164</doi>
<cYear>1977</cYear>
<unstructured_citation>Lucy, L. B. (1977). A numerical
approach to the testing of the fission hypothesis. The Astronomical
Journal, 82, 1013–1024.
https://doi.org/10.1086/112164</unstructured_citation>
</citation>
<citation key="Gingold1977">
<article_title>Smoothed particle hydrodynamics: theory and
application to non-spherical stars.</article_title>
<author>Gingold</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<volume>181</volume>
<doi>10.1093/mnras/181.3.375</doi>
<cYear>1977</cYear>
<unstructured_citation>Gingold, R. A., &amp; Monaghan, J. J.
(1977). Smoothed particle hydrodynamics: theory and application to
non-spherical stars. Monthly Notices of the Royal Astronomical Society,
181, 375–389.
https://doi.org/10.1093/mnras/181.3.375</unstructured_citation>
</citation>
<citation key="Bertschinger2001">
<article_title>Multiscale Gaussian Random Fields and Their
Application to Cosmological Simulations</article_title>
<author>Bertschinger</author>
<journal_title>The Astrophysical Journal
Supplements</journal_title>
<issue>1</issue>
<volume>137</volume>
<doi>10.1086/322526</doi>
<cYear>2001</cYear>
<unstructured_citation>Bertschinger, E. (2001). Multiscale
Gaussian Random Fields and Their Application to Cosmological
Simulations. The Astrophysical Journal Supplements, 137(1), 1–20.
https://doi.org/10.1086/322526</unstructured_citation>
</citation>
<citation key="deBlok2015">
<article_title>The SKA view of the Neutral Interstellar
Medium in Galaxies</article_title>
<author>de Blok</author>
<journal_title>Advancing astrophysics with the square
kilometre array (AASKA14)</journal_title>
<doi>10.22323/1.215.0129</doi>
<cYear>2015</cYear>
<unstructured_citation>de Blok, E., Fraternali, F., Heald,
G., Adams, B., Bosma, A., &amp; Koribalski, B. (2015). The SKA view of
the Neutral Interstellar Medium in Galaxies. Advancing Astrophysics with
the Square Kilometre Array (AASKA14), 129.
https://doi.org/10.22323/1.215.0129</unstructured_citation>
</citation>
<citation key="Read2016">
<article_title>Understanding the shape and diversity of
dwarf galaxy rotation curves in \LambdaCDM</article_title>
<author>Read</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>4</issue>
<volume>462</volume>
<doi>10.1093/mnras/stw1876</doi>
<cYear>2016</cYear>
<unstructured_citation>Read, J. I., Iorio, G., Agertz, O.,
&amp; Fraternali, F. (2016). Understanding the shape and diversity of
dwarf galaxy rotation curves in \LambdaCDM. Monthly Notices of the Royal
Astronomical Society, 462(4), 3628–3645.
https://doi.org/10.1093/mnras/stw1876</unstructured_citation>
</citation>
<citation key="Bilimogga2022">
<article_title>Using EAGLE simulations to study the effect
of observational constraints on the determination of H I asymmetries in
galaxies</article_title>
<author>Bilimogga</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>4</issue>
<volume>513</volume>
<doi>10.1093/mnras/stac1213</doi>
<cYear>2022</cYear>
<unstructured_citation>Bilimogga, P. V., Oman, K. A.,
Verheijen, M. A. W., &amp; van der Hulst, T. (2022). Using EAGLE
simulations to study the effect of observational constraints on the
determination of H I asymmetries in galaxies. Monthly Notices of the
Royal Astronomical Society, 513(4), 5310–5327.
https://doi.org/10.1093/mnras/stac1213</unstructured_citation>
</citation>
<citation key="Roper2023">
<article_title>The diversity of rotation curves of simulated
galaxies with cusps and cores</article_title>
<author>Roper</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>1</issue>
<volume>521</volume>
<doi>10.1093/mnras/stad549</doi>
<cYear>2023</cYear>
<unstructured_citation>Roper, F. A., Oman, K. A., Frenk, C.
S., Benı́tez-Llambay, A., Navarro, J. F., &amp; Santos-Santos, I. M. E.
(2023). The diversity of rotation curves of simulated galaxies with
cusps and cores. Monthly Notices of the Royal Astronomical Society,
521(1), 1316–1336.
https://doi.org/10.1093/mnras/stad549</unstructured_citation>
</citation>
<citation key="Oman2024">
<article_title>A warm dark matter cosmogony may yield more
low-mass galaxy detections in 21-cm surveys than a cold dark matter
one</article_title>
<author>Oman</author>
<journal_title>arXiv e-prints</journal_title>
<doi>10.48550/arXiv.2401.11878</doi>
<cYear>2024</cYear>
<unstructured_citation>Oman, K. A., Frenk, C. S., Crain, R.
A., Lovell, M. R., &amp; Pfeffer, J. (2024). A warm dark matter
cosmogony may yield more low-mass galaxy detections in 21-cm surveys
than a cold dark matter one. arXiv e-Prints, arXiv:2401.11878.
https://doi.org/10.48550/arXiv.2401.11878</unstructured_citation>
</citation>
<citation key="Glowacki2022">
<article_title>ASymba: H I global profile asymmetries in the
SIMBA simulation</article_title>
<author>Glowacki</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>1</issue>
<volume>517</volume>
<doi>10.1093/mnras/stac2684</doi>
<cYear>2022</cYear>
<unstructured_citation>Glowacki, M., Deg, N., Blyth, S.-L.,
Hank, N., Davé, R., Elson, E., &amp; Spekkens, K. (2022). ASymba: H I
global profile asymmetries in the SIMBA simulation. Monthly Notices of
the Royal Astronomical Society, 517(1), 1282–1298.
https://doi.org/10.1093/mnras/stac2684</unstructured_citation>
</citation>
<citation key="Glowacki2021">
<article_title>The redshift evolution of the baryonic
Tully-Fisher relation in SIMBA</article_title>
<author>Glowacki</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>3</issue>
<volume>507</volume>
<doi>10.1093/mnras/stab2279</doi>
<cYear>2021</cYear>
<unstructured_citation>Glowacki, M., Elson, E., &amp; Davé,
R. (2021). The redshift evolution of the baryonic Tully-Fisher relation
in SIMBA. Monthly Notices of the Royal Astronomical Society, 507(3),
3267–3284.
https://doi.org/10.1093/mnras/stab2279</unstructured_citation>
</citation>
<citation key="Chauhan2019">
<article_title>The H I velocity function: a test of
cosmology or baryon physics?</article_title>
<author>Chauhan</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>4</issue>
<volume>488</volume>
<doi>10.1093/mnras/stz2069</doi>
<cYear>2019</cYear>
<unstructured_citation>Chauhan, G., Lagos, C. del P.,
Obreschkow, D., Power, C., Oman, K., &amp; Elahi, P. J. (2019). The H I
velocity function: a test of cosmology or baryon physics? Monthly
Notices of the Royal Astronomical Society, 488(4), 5898–5915.
https://doi.org/10.1093/mnras/stz2069</unstructured_citation>
</citation>
<citation key="ManceraPina2019">
<article_title>Off the Baryonic Tully-Fisher Relation: A
Population of Baryon-dominated Ultra-diffuse Galaxies</article_title>
<author>Mancera Piña</author>
<journal_title>The Astrophysical Journal
Letters</journal_title>
<issue>2</issue>
<volume>883</volume>
<doi>10.3847/2041-8213/ab40c7</doi>
<cYear>2019</cYear>
<unstructured_citation>Mancera Piña, P. E., Fraternali, F.,
Adams, E. A. K., Marasco, A., Oosterloo, T., Oman, K. A., Leisman, L.,
di Teodoro, E. M., Posti, L., Battipaglia, M., Cannon, J. M., Gault, L.,
Haynes, M. P., Janowiecki, S., McAllan, E., Pagel, H. J., Reiter, K.,
Rhode, K. L., Salzer, J. J., &amp; Smith, N. J. (2019). Off the Baryonic
Tully-Fisher Relation: A Population of Baryon-dominated Ultra-diffuse
Galaxies. The Astrophysical Journal Letters, 883(2), L33.
https://doi.org/10.3847/2041-8213/ab40c7</unstructured_citation>
</citation>
<citation key="ManceraPina2020">
<article_title>Robust H I kinematics of gas-rich
ultra-diffuse galaxies: hints of a weak-feedback formation
scenario</article_title>
<author>Mancera Piña</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>4</issue>
<volume>495</volume>
<doi>10.1093/mnras/staa1256</doi>
<cYear>2020</cYear>
<unstructured_citation>Mancera Piña, P. E., Fraternali, F.,
Oman, K. A., Adams, E. A. K., Bacchini, C., Marasco, A., Oosterloo, T.,
Pezzulli, G., Posti, L., Leisman, L., Cannon, J. M., di Teodoro, E. M.,
Gault, L., Haynes, M. P., Reiter, K., Rhode, K. L., Salzer, J. J., &amp;
Smith, N. J. (2020). Robust H I kinematics of gas-rich ultra-diffuse
galaxies: hints of a weak-feedback formation scenario. Monthly Notices
of the Royal Astronomical Society, 495(4), 3636–3655.
https://doi.org/10.1093/mnras/staa1256</unstructured_citation>
</citation>
<citation key="SantosSantos2020">
<article_title>Baryonic clues to the puzzling diversity of
dwarf galaxy rotation curves</article_title>
<author>Santos-Santos</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>1</issue>
<volume>495</volume>
<doi>10.1093/mnras/staa1072</doi>
<cYear>2020</cYear>
<unstructured_citation>Santos-Santos, I. M. E., Navarro, J.
F., Robertson, A., Benı́tez-Llambay, A., Oman, K. A., Lovell, M. R.,
Frenk, C. S., Ludlow, A. D., Fattahi, A., &amp; Ritz, A. (2020).
Baryonic clues to the puzzling diversity of dwarf galaxy rotation
curves. Monthly Notices of the Royal Astronomical Society, 495(1),
58–77. https://doi.org/10.1093/mnras/staa1072</unstructured_citation>
</citation>
<citation key="Oman2019">
<article_title>Non-circular motions and the diversity of
dwarf galaxy rotation curves</article_title>
<author>Oman</author>
<journal_title>Monthly Notices of the Royal Astronomical
Society</journal_title>
<issue>1</issue>
<volume>482</volume>
<doi>10.1093/mnras/sty2687</doi>
<cYear>2019</cYear>
<unstructured_citation>Oman, K. A., Marasco, A., Navarro, J.
F., Frenk, C. S., Schaye, J., &amp; Benı́tez-Llambay, A. (2019).
Non-circular motions and the diversity of dwarf galaxy rotation curves.
Monthly Notices of the Royal Astronomical Society, 482(1), 821–847.
https://doi.org/10.1093/mnras/sty2687</unstructured_citation>
</citation>
<citation key="Guglielmetti2023">
<article_title>A BRAIN study to tackle image analysis with
artificial intelligence in the ALMA 2030 era</article_title>
<author>Guglielmetti</author>
<journal_title>arXiv e-prints</journal_title>
<doi>10.48550/arXiv.2311.10657</doi>
<cYear>2023</cYear>
<unstructured_citation>Guglielmetti, F., Delli Veneri, M.,
Baronchelli, I., Blanco, C., Dosi, A., Enßlin, T., Johnson, V., Longo,
G., Roth, J., Stoehr, F., Tychoniec, Ł., &amp; Villard, E. (2023). A
BRAIN study to tackle image analysis with artificial intelligence in the
ALMA 2030 era. arXiv e-Prints, arXiv:2311.10657.
https://doi.org/10.48550/arXiv.2311.10657</unstructured_citation>
</citation>
</citation_list>
</journal_article>
</journal>
</body>
</doi_batch>
Binary file added joss.06860/10.21105.joss.06860.pdf
Binary file not shown.
Loading

0 comments on commit 24f47c1

Please sign in to comment.