Earth and Planetary Science Letters (earth-and-planetary-science-letters)
Journal positioning
Earth and Planetary Science Letters (EPSL), published by Elsevier, is a broad-interest
journal for quantitative research on the physical and chemical processes of the Earth and
other planets. The defining expectation is a process-oriented, quantitatively rigorous
advance — in geochemistry, geophysics, geodynamics, petrology and mineral physics, planetary
processes, or paleoclimate/paleoceanography proxy science — that is significant to a wide
earth- and planetary-science readership rather than to one specialty alone. Despite the
"Letters" name, EPSL favors complete, self-contained articles in which the data, modeling,
and interpretation jointly support a generalizable mechanism; a purely descriptive regional
report, a method note with no process payoff, or a result of interest only to a narrow
sub-field is a weak fit. This skill is a fit / venue-selection / re-framing tool. It
does not replace the journal's current author guidance. Before submitting, re-check the live
EPSL / Elsevier author instructions and data policy.
When to trigger
- The author names EPSL and wants a fit/framing check for a quantitative solid-earth or
planetary-science paper.
- A regional geochemical or geophysical study must be re-framed into a transferable
process or mechanism of broad interest.
- The author is choosing between EPSL (longer quantitative process article) and
geology
(short, high-immediacy GSA letter).
- The author needs EPSL's broad-interest significance bar and quantitative evidence
expectations.
Scope & topic fit
- Geochemistry and isotope geochemistry: tracers, dating, and elemental/isotopic systems
constraining earth and planetary processes.
- Geophysics and geodynamics: seismology, mantle dynamics, tectonics, gravity/magnetics, and
lithosphere/deep-earth structure and evolution.
- Petrology, mineral physics, and high-pressure/high-temperature experiments bearing on
planetary interiors and differentiation.
- Surface and planetary processes: volcanism, impacts, planetary evolution, and comparative
planetology with quantitative constraints.
- Paleoclimate and paleoceanography proxy records and their calibration, when the
contribution is a mechanism or a generalizable proxy advance.
- Cross-cutting modeling that links observations to a quantitative earth/planetary process.
Method & evidence bar
- The contribution must be a quantitative, generalizable process or mechanism, not a
catalogue of measurements from one locality.
- Geochemical/isotopic data require documented analytical methods, standards, reference
materials, blanks, and full uncertainty propagation.
- Geophysical and modeling results need stated assumptions, resolution/sensitivity tests,
and evaluation against independent observations.
- Proxy and paleo reconstructions require explicit calibration, age-model treatment, and
uncertainty, with alternative interpretations considered.
- Claims of broad significance must connect the local result to a wider earth/planetary
process; mechanism should be argued, not merely correlated.
- Underlying data (and code where used) should be deposited in a FAIR repository or
supplied as machine-readable tables per Elsevier/research-data policy.
Structure & house style
- Elsevier article format; EPSL is article-length and self-contained despite the "Letters"
name — re-check current article types and length on the live guide.
- The introduction must state the earth/planetary-science gap and the broad-interest
contribution, not merely describe a field area or sample set.
- Figures should be quantitative and load-bearing (data with uncertainty, model–data
comparisons, maps/cross-sections, isotope/phase diagrams) and support the mechanism.
- Methods and a data-availability statement must let a reader reproduce the central result;
analytical protocols and data tables belong in the paper or supplement.
- Interpretation should be proportionate to the data and explicitly bounded by stated
uncertainties.
Official-submission checklist
- Before giving submission-ready advice, read
../../resources/source-basis.md and
../../resources/official-source-map.md; start from the Elsevier/EPSL anchors, then cite
the current EPSL page you checked.
- Search the live site for "Earth and Planetary Science Letters guide for authors" and
follow the current Elsevier version.
- Re-check article types, abstract/format expectations, and length/figure expectations.
- Confirm the research-data policy: deposit data/code in a FAIR repository or provide
machine-readable data tables, and cite them appropriately.
- Re-check competing-interests, funding, author-contribution, CRediT, AI-use disclosure, and
open-access terms.
- If the live official instructions conflict with this skill, the official instructions
win.
Pre-submission self-check
Common desk-reject triggers
- A descriptive regional report with no transferable process or broad-interest significance.
- Geochemical data without standards, reference materials, or uncertainty propagation.
- Model or geophysical results lacking sensitivity tests or independent evaluation.
- Proxy/paleo claims without calibration, age-model treatment, or uncertainty.
- Interpretation that outruns the data or ignores plausible alternatives.
- Scope too narrow or too applied for EPSL's broad earth/planetary readership.
Re-routing decision
- Short, high-immediacy result with broad significance in tight length →
geology.
- Highest-impact earth-science breakthrough for a general audience →
nature-geoscience.
- Carbon/nutrient/element cycling and budgets are the core →
global-biogeochemical-cycles.
- A documented dataset is the deliverable rather than the interpretation →
earth-system-science-data.
- Short, fast geophysical/geochemical communication →
geophysical-research-letters.
Output format
[Fit] High / Medium / Low (one-line reason)
[Target] Earth and Planetary Science Letters
[Topic tags] <2–3 closest solid-earth/planetary topics>
[Process contribution] <the quantitative, generalizable mechanism beyond one locality>
[Method/evidence] <do analytics + uncertainty + model/data evaluation clear EPSL's bar?>
[Top risk] <the single most likely reason for rejection>
[Official items to re-check] <article type / data policy / analytical reporting / disclosures>
[Re-route suggestion] <if not a fit, a better-matched venue>
Source: brycewang-stanford/Awesome-Journal-Skills → Agriculture-Environment-Journal-Skills/skills/earth-and-planetary-science-letters/SKILL.md
1---2name: earth-and-planetary-science-letters3description: Use when targeting Earth and Planetary Science Letters (EPSL) or deciding whether a quantitative solid-earth or planetary-science manuscript fits this venue. Encodes the journal's broad-interest process-science fit, the quantitative geochemistry/geophysics evidence bar, Elsevier house style, official-submission re-check, and desk-reject heuristics.4---5
6
7# Earth and Planetary Science Letters (earth-and-planetary-science-letters)
8
9## Journal positioning
10
11Earth and Planetary Science Letters (EPSL), published by Elsevier, is a broad-interest
12journal for **quantitative research on the physical and chemical processes of the Earth and
13other planets**. The defining expectation is a process-oriented, quantitatively rigorous
14advance — in geochemistry, geophysics, geodynamics, petrology and mineral physics, planetary
15processes, or paleoclimate/paleoceanography proxy science — that is significant to a wide
16earth- and planetary-science readership rather than to one specialty alone. Despite the
17"Letters" name, EPSL favors complete, self-contained articles in which the data, modeling,
18and interpretation jointly support a generalizable mechanism; a purely descriptive regional
19report, a method note with no process payoff, or a result of interest only to a narrow
20sub-field is a weak fit. This skill is a **fit / venue-selection / re-framing** tool. It
21does not replace the journal's current author guidance. Before submitting, re-check the live
22EPSL / Elsevier author instructions and data policy.
23
24## When to trigger
25
26- The author names EPSL and wants a fit/framing check for a quantitative solid-earth or
27 planetary-science paper.
28- A regional geochemical or geophysical study must be re-framed into a transferable
29 process or mechanism of broad interest.
30- The author is choosing between EPSL (longer quantitative process article) and `geology`
31 (short, high-immediacy GSA letter).
32- The author needs EPSL's broad-interest significance bar and quantitative evidence
33 expectations.
34
35## Scope & topic fit
36
37- Geochemistry and isotope geochemistry: tracers, dating, and elemental/isotopic systems
38 constraining earth and planetary processes.
39- Geophysics and geodynamics: seismology, mantle dynamics, tectonics, gravity/magnetics, and
40 lithosphere/deep-earth structure and evolution.
41- Petrology, mineral physics, and high-pressure/high-temperature experiments bearing on
42 planetary interiors and differentiation.
43- Surface and planetary processes: volcanism, impacts, planetary evolution, and comparative
44 planetology with quantitative constraints.
45- Paleoclimate and paleoceanography proxy records and their calibration, when the
46 contribution is a mechanism or a generalizable proxy advance.
47- Cross-cutting modeling that links observations to a quantitative earth/planetary process.
48
49## Method & evidence bar
50
51- The contribution must be a **quantitative, generalizable process or mechanism**, not a
52 catalogue of measurements from one locality.
53- Geochemical/isotopic data require documented analytical methods, standards, reference
54 materials, blanks, and full uncertainty propagation.
55- Geophysical and modeling results need stated assumptions, resolution/sensitivity tests,
56 and evaluation against independent observations.
57- Proxy and paleo reconstructions require explicit calibration, age-model treatment, and
58 uncertainty, with alternative interpretations considered.
59- Claims of broad significance must connect the local result to a wider earth/planetary
60 process; mechanism should be argued, not merely correlated.
61- Underlying data (and code where used) should be deposited in a FAIR repository or
62 supplied as machine-readable tables per Elsevier/research-data policy.
63
64## Structure & house style
65
66- Elsevier article format; EPSL is article-length and self-contained despite the "Letters"
67 name — re-check current article types and length on the live guide.
68- The introduction must state the earth/planetary-science gap and the broad-interest
69 contribution, not merely describe a field area or sample set.
70- Figures should be quantitative and load-bearing (data with uncertainty, model–data
71 comparisons, maps/cross-sections, isotope/phase diagrams) and support the mechanism.
72- Methods and a data-availability statement must let a reader reproduce the central result;
73 analytical protocols and data tables belong in the paper or supplement.
74- Interpretation should be proportionate to the data and explicitly bounded by stated
75 uncertainties.
76
77## Official-submission checklist
78
79- Before giving submission-ready advice, read `../../resources/source-basis.md` and
80 `../../resources/official-source-map.md`; start from the Elsevier/EPSL anchors, then cite
81 the current EPSL page you checked.
82- Search the live site for "Earth and Planetary Science Letters guide for authors" and
83 follow the current Elsevier version.
84- Re-check article types, abstract/format expectations, and length/figure expectations.
85- Confirm the **research-data policy**: deposit data/code in a FAIR repository or provide
86 machine-readable data tables, and cite them appropriately.
87- Re-check competing-interests, funding, author-contribution, CRediT, AI-use disclosure, and
88 open-access terms.
89- If the live official instructions conflict with this skill, the official instructions
90 win.
91
92## Pre-submission self-check
93
94- [ ] The contribution is a quantitative, generalizable process/mechanism, not a local catalogue.
95- [ ] Analytical methods, standards, and full uncertainty propagation are documented.
96- [ ] Geophysical/model results include resolution/sensitivity tests and independent evaluation.
97- [ ] Proxy/paleo reconstructions state calibration, age models, and alternative interpretations.
98- [ ] Broad-interest significance is argued by linking the local result to a wider process.
99- [ ] Data (and code) are deposited or supplied machine-readable per the data policy.
100
101## Common desk-reject triggers
102
103- A descriptive regional report with no transferable process or broad-interest significance.
104- Geochemical data without standards, reference materials, or uncertainty propagation.
105- Model or geophysical results lacking sensitivity tests or independent evaluation.
106- Proxy/paleo claims without calibration, age-model treatment, or uncertainty.
107- Interpretation that outruns the data or ignores plausible alternatives.
108- Scope too narrow or too applied for EPSL's broad earth/planetary readership.
109
110## Re-routing decision
111
112- Short, high-immediacy result with broad significance in tight length → `geology`.
113- Highest-impact earth-science breakthrough for a general audience → `nature-geoscience`.
114- Carbon/nutrient/element cycling and budgets are the core → `global-biogeochemical-cycles`.
115- A documented dataset is the deliverable rather than the interpretation → `earth-system-science-data`.
116- Short, fast geophysical/geochemical communication → `geophysical-research-letters`.
117
118## Output format
119
120```text
121[Fit] High / Medium / Low (one-line reason)
122[Target] Earth and Planetary Science Letters
123[Topic tags] <2–3 closest solid-earth/planetary topics>
124[Process contribution] <the quantitative, generalizable mechanism beyond one locality>
125[Method/evidence] <do analytics + uncertainty + model/data evaluation clear EPSL's bar?>
126[Top risk] <the single most likely reason for rejection>
127[Official items to re-check] <article type / data policy / analytical reporting / disclosures>
128[Re-route suggestion] <if not a fit, a better-matched venue>
129```
130
131---
132
133**Source:** [`brycewang-stanford/Awesome-Journal-Skills`](https://github.com/brycewang-stanford/Awesome-Journal-Skills) → `Agriculture-Environment-Journal-Skills/skills/earth-and-planetary-science-letters/SKILL.md`