REVIEW 2 major objections 6 minor 276 references
Selecting quiescent late-type galaxies from SDSS catalogues overcounts them by about a factor of two because most edge-on cases are misclassified S0s.
Reviewed by Pith at T0; open to challenge. T0 means a machine referee read the full paper against a public rubric. the ladder, T0–T4 →
T0 review · grok-4.5
2026-07-31 08:25 UTC pith:32OOWRPZ
load-bearing objection Clear inclination bias in quiescent-LTG selections is real and well shown; the factor-of-two number is a single-assumption estimate that should be treated as illustrative, not definitive. the 2 major comments →
Too many quiescent late-type galaxies or a matter of misclassification?
The pith
A machine-rendered reading of the paper's core claim, the machinery that carries it, and where it could break.
Core claim
The observed excess of edge-on quiescent late-type galaxies is largely an artefact of morphological misclassification: most of those systems are edge-on S0 galaxies that cannot be distinguished from spirals once the arms are hidden by inclination. As a direct consequence, the fraction of true quiescent late-types in SDSS is overestimated by a factor of roughly two.
What carries the argument
The mixture decomposition of the axis-ratio distribution (Eq. 3): the observed b/a histogram of quiescent late-types is written as a linear combination of the unbiased main-sample distribution and a pure contaminant component confined to b/a < 0.4; solving for the mixing weight yields the global misclassification fraction of ~58 per cent.
Load-bearing premise
The calculation treats every misclassified galaxy as living strictly below axis ratio 0.4, so that the contaminant distribution integrates to one inside that bin and nowhere else.
What would settle it
Reclassify the same edge-on quiescent candidates with higher-resolution imaging or integral-field kinematics that can reveal residual spiral structure or a classical bulge; if the majority remain late-type after that test, the mixture correction fails.
If this is right
- Any published fraction of quiescent late-types drawn from SDSS morphological catalogues without an inclination cut is inflated by a factor of ~2.
- S0 samples selected the same way are correspondingly incomplete at high inclination.
- Statistical weights based on the main-sample axis-ratio distribution can restore an unbiased census without discarding every edge-on galaxy.
- The same inclination check should be applied whenever late-types are selected by other early-type-like properties (old stellar populations, kinematic misalignment).
Where Pith is reading between the lines
- Catalogue-trained neural nets will keep reproducing the bias until edge-on S0s are deliberately over-represented or flagged in the training labels.
- Environment studies that report elevated quiescent-spiral fractions in dense regions may partly be counting stripped S0s viewed edge-on.
- A clean volume-limited sample with b/a > 0.4 would give a sharper empirical upper limit on how common genuine quenched discs really are.
Editorial analysis
A structured set of objections, weighed in public.
Referee Report
Summary. This letter shows that selecting quiescent late-type galaxies (LTGs) from SDSS-based morphological catalogues (NSA + GSWLC + Domínguez Sánchez et al. 2023) produces a strong over-representation of edge-on systems: the b/a distribution of quiescent LTGs peaks at ~0.2 with ~60–69% of objects below b/a = 0.4, versus ~25% for the parent sample, and the independent P_edge diagnostic confirms it. The bias persists under a dust-insensitive D4000 quiescence selection (ruling out dust reddening of inclined star-forming discs as the cause), S0s show a mirror deficit at low b/a, edge-on quiescent LTGs sit with S0s in the SFR–M* plane (Appendix A), and their T-type range (0–4) coincides with the regime of unreliable visual classification. Using a two-component mixture model (Eqs. 2–4) with the main-sample b/a distribution as reference and assuming contaminants are confined to b/a < 0.4, the authors estimate that ~58% of quiescent LTGs may be misclassified edge-on S0s, implying the quiescent-LTG fraction could be overestimated by a factor ~2.4. They recommend excluding edge-on systems or reweighting by inclination.
Significance. If it holds, this is a practically important caution for a large user community: quiescent-LTG fractions are inputs to quenching-pathway and morphology-transformation studies, and a factor-of-two contamination correction materially changes their interpretation. The letter's strengths are its reproducibility (entirely public catalogues with URLs provided), its falsifiable and simple mitigation recipes (exclude edge-on systems, or apply the b/a reweighting of Eq. 5), and the convergence of multiple independent diagnostics rather than a single statistic. The demonstration that the bias survives a dust-insensitive quiescence definition properly closes the main alternative explanation. The quantitative correction factor is less secure than the qualitative bias, but it is presented with appropriate hedging and, with the requested sensitivity check, would be a defensible estimate.
major comments (2)
- [§3.2] Eqs. (2)–(3): the headline numbers (φ_mis ≈ 58%, φ_true ≈ 1.4%, factor ≈ 2.4) rest entirely on the assumption that misclassified galaxies populate exclusively b/a < 0.4, so that the integrated F_mis equals unity on that interval, and that genuine quiescent LTGs share the main-sample b/a distribution. Neither assumption is varied or empirically justified. If real contaminants leak above b/a = 0.4 (plausible for moderately inclined S0s whose bulge–disc contrast is still hidden), φ_mis is underestimated; if genuinely quenched discs are intrinsically thicker than the average disc population, it is overestimated. Since the authors have already verified that star-forming LTGs follow the main-sample distribution, a sensitivity check is cheap: repeat the calculation with the boundary at b/a = 0.3 and 0.5, and with the LTG or star-forming-LTG sample (rather than the morphology-mixed main sample)
- [§3.2 / §3.1] The main galaxy sample is used as the unbiased reference distribution, but it contains the very contaminants at issue (the misclassified edge-on S0s remain in it). The authors note the contaminants are <2% of the main sample, so the effect is small, but the reference is also morphology-mixed: it includes ellipticals (skewed to high b/a) and any other inclination-correlated selections. The text asserts the main-sample distribution is 'approximately uniform' and the footnote gives 0.25 below b/a = 0.4, consistent with thin discs with q0 ~ 0.2, so this choice is likely benign — but it should be demonstrated, not asserted. Please show explicitly that using the full LTG sample (or star-forming LTGs) as the reference leaves the 0.25 fraction, and hence φ_mis, essentially unchanged.
minor comments (6)
- [§3.1 vs footnote 4] Internal numerical inconsistency: §3.1 states that 'around sixty per cent' of quiescent LTGs have b/a < 0.4, while footnote 4 gives 0.69. Since 0.69 is the value entering Eq. (3), the ~60% figure in the text (and the matching statement for P_edge) should be reconciled.
- [§2] The stated percentages for the comparison samples do not match the counts: 85,554 S0s and 57,554 Es correspond to 19.3% and 13.0% of the 442,872-object main sample, not the quoted 22% and 11%. Please check the denominators.
- [§3.2, Eqs. (2)–(4)] Eqs. (2)–(3) use F for both the differential b/a distribution and its integral over b/a < 0.4; the transition from the pointwise mixture to integrated fractions should be written explicitly (e.g., with separate notation for pdf and CDF) to avoid confusion.
- [Appendix A] The edge-on cut P_edge > 0.7 is introduced without justification; a sentence on the sensitivity of the Appendix A conclusion to this threshold would help, especially since §3.3 recommends exactly this kind of cut to other users.
- [Figures 1–2] No statistical uncertainties are shown on the histograms in Figs. 1–2. With ~14,600 quiescent LTGs Poisson errors are small, but they should be indicated (or stated) so the KS results and the excess are visually quantified.
- [§3.2, footnote 5] The claim that the bias also affects kinematically misaligned LTG selections (footnote 5) is asserted without any supporting figure or number; either provide a brief quantitative statement or soften to 'will be explored in future work'.
Circularity Check
No significant circularity: empirical histogram comparison plus a transparent mixture estimator, not a derivation forced by its inputs.
full rationale
The paper’s load-bearing chain is observational, not definitional. It selects quiescent LTGs from public catalogues (NSA, GSWLC, Domínguez Sánchez morphologies), compares their observed b/a and P_edge distributions to the parent sample and to S0/E controls (Figs. 1–2), notes a mirror deficit of edge-on S0s, and checks that the excess survives a dust-insensitive D4000 cut. The quantitative claim (φ_mis ≈ 58%, factor-of-~2 overestimate) comes from an explicit mixture model (Eqs. 2–4) that treats the main-sample b/a distribution as the unbiased reference and assumes contaminants lie only at b/a < 0.4 so that F_mis integrates to 1 on that interval. That assumption is a modeling choice that can be varied; it does not make φ_mis equal to an input by construction, nor is any fitted parameter renamed as a prediction. Self-citations (Domínguez Sánchez catalogues; Tous et al. quiescence offset) supply data products and a selection cut, not a uniqueness theorem or a result that forces the target fraction. Cross-checks with independent T-types (Vázquez-Mata) and Bom et al. further keep the argument externally anchored. No self-definitional loop, no fitted-input-as-prediction, and no load-bearing self-citation chain.
Axiom & Free-Parameter Ledger
free parameters (4)
- quiescence offset threshold =
−1.1 dex
- P_LTG classification threshold =
0.5
- b/a contaminant boundary =
0.4
- P_edge edge-on cut (Appendix A) =
0.7
axioms (4)
- domain assumption For thin, nearly axisymmetric discs, projected axis ratio b/a primarily traces inclination, so a randomly oriented disc population has an approximately uniform b/a distribution.
- domain assumption The main NSA galaxy sample’s b/a distribution is an unbiased reference for the intrinsic inclination distribution of LTGs.
- domain assumption Morphological probabilities (P_LTG, P_S0, T-type, P_edge) from Domínguez Sánchez et al. (2023) and SFRs/M* from GSWLC-Salim et al. (2018) are sufficiently accurate for population statistics.
- standard math Flat ΛCDM with H0 = 70 km s−1 Mpc−1 and Ωm = 0.3.
read the original abstract
In the local Universe, the terms late-type and early-type are used to describe, respectively, disc galaxies with spiral arms and more bulge-dominated systems lacking spiral structure. These morphologies are often associated with different star formation levels, motivating the classical scenario where late-type and early-type galaxies are seen, respectively, as star-forming and "red and dead" systems. To build a comprehensive picture of galaxy evolution, we must understand the relationship between morphology and star formation, and be able to explain more exotic configurations, such as quiescence in late-type galaxies. Large morphological catalogues are valuable tools to address these questions, but they must not be used blindly. We show that selecting quiescent galaxies classified as late-type in these catalogues leads to a clear excess of edge-on systems, with unreliable morphologies, compared with the general galaxy population in the Sloan Digital Sky Survey. Consequently, the fraction of quiescent late-type galaxies in this survey could be overestimated by a factor of two. Conversely, S0 galaxies, considered early-type discs without spiral arms, are under-represented at high inclinations. We conclude that the excess of edge-on quiescent late-type galaxies can be explained if most of these systems are misclassified edge-on S0 galaxies. We make recommendations to remove this bias.
Figures
Reference graph
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Pith/arXiv arXiv 2017
discussion (0)
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