Where it forms, where it's found
- Geological setting
A rare secondary mineral in cobalt-bearing hydrothermal mineral deposits.
- Type locality
- Schneeberg
- Erzgebirgskreis
- Saxony
- Germany
21recorded occurrences
Safety & handling
Physical
Optical
- Optical type
- Biaxial (-) · 2V measured = 80 – 90°
- Refractive index
- 1.723 – 1.756
- Surface relief
- High
- Principal indices
- nα 1.723 · nβ 1.737 · nγ 1.756
- Pleochroism
- Visible
X = pink; Y = pale pink; Z = nearly colorless.
- Dispersion
- r > v
Δ = 0Δmax
PPLpleochroism per grain
XPLindependent extinctions · rotate the stage
PPLpleochroism only · colour blends on rotation
XPLinterference colour · extinct every 90°
Retardation330 nm
Order1st order
XPL colour
Crystallography
- Cell parameters
- a = 5.88 Å · b = 7.67 Å · c = 5.58 Å
- Cell angles
- α = 112.32 ° · β = 71.35 ° · γ = 119.68 °
- Ratio a:b:c
- 1 : 1.304 : 0.949
- Z
- 1
- Type-locality form
As granular aggregates.
- Comment
Point Group: 1 or _1.;Space Group: P1 or P_1.
Crystal structure
Chemical composition
Synonyms
- Anorthoroseliet
- Anorthorosélite
- Anortoroselitt
- Roselite-beta
- Roselite-β
- β-Roselit
- β-Roselita
- β-Roselite
- β-Roselith
In other languages
- French
- bêta-rosélite · rosélite-bêta · rosélite-β · β-rosélite
- German
- Anorthoroselith · Roselith-beta · Roselith-β
- Italian
- anortoroselite · Roselite-beta · roselite-β
Classification
Strunz
10th ed.8.CG.05
- 8Phosphates, Arsenates, VanadatesClass
- 8.CPhosphates without additional anions, with H2ODivision
- 8.CGWith large and medium-sized cations, RO4:H2O = 1:1Group
- 8.CG.05AnorthoroseliteSpecies
Dana
8th ed.40.02.02.07
- 40Hydrated Normal Phosphates, Arsenates and VanadatesClass
- 40.02AB2(XO4)2·xH2OType
- 40.02.02Fairfieldite Subgroup (Triclinic: P-1¯)Group
- 40.02.02.07AnorthoroseliteSpecies
CIM
—20.10.4
- 20Arsenates (also arsenates with phosphate, but without other anions)Class
- 20.10Arsenates of Co and NiGroup
- 20.10.4AnorthoroseliteSpecies
Group, growth & confusion
Literature, links & citation
Citations
- 1955Frondel, Clifford (1955) Neomesselite and beta-roselite: Two new members of the fairfieldite group. American Mineralogist, 40 (9-10) 828-833
- 1964Bulletin de la Société française de Minéralogie et de Cristallographie (1964): 87: 169.
- 2004Joswig, W., Paulus, E. F., Liebscher, B. (2004) Crystal structure of dicalcium (cobalt, magnesium) diarsenate dihydrate, Ca2(Co0.532Mg0.468)[AsO4]2 · 2H2O, hydrogen bonding in talmessite. Zeitschrift für Kristallographie - New Crystal Structures, 219 (1) 341-342 doi:10.1524/ncrs.2004.219.14.373DOI: 10.1524/ncrs.2004.219.14.373
- 2022Miyawaki, Ritsuro, Hatert, Frédéric, Pasero, Marco, Mills, Stuart J. (2022) IMA Commission on New Minerals, Nomenclature and Classification (CNMNC) – Newsletter 69. European Journal of Mineralogy, 34 (5) 463-468 doi:10.5194/ejm-34-463-2022 DOI: 10.5194/ejm-34-463-2022
- 2024Biagioni, C., Mugnaioli, E., Lorenzon, S., Mauro, D., Musetti, S., Sejkora, J., Belmonte, D., Demitri, N., Dolníček, Z. (2024) Nannoniite, IMA 2024-010, in IMA Commission on New Minerals, Nomenclature and Classification (CNMNC) – Newsletter 80. European Journal of Mineralogy, 36 (4). 599-604 doi:10.5194/ejm-36-599-2024DOI: 10.5194/ejm-36-599-2024
Cite this entry
@misc{mineral2026,
author = {Mineral Index editorial board},
title = {Anorthoroselite — Mineral Index},
year = {2026},
url = {https://mineralindex.org/minerals/anorthoroselite-3451},
note = {Accessed 2026-05-11}
}





