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All Outputs (3)

Absence of quantum criticality and bulk 3D magnetism in green dioptase (2017)
Journal Article
Berlie, A., & Terry, I. (2017). Absence of quantum criticality and bulk 3D magnetism in green dioptase. European Physical Society Letters, 120(4), Article 47006. https://doi.org/10.1209/0295-5075/120/47006

Green dioptase is a naturally occurring antiferromagnetic mineral that in recent years has been suggested as a candidate to exhibit quantum fluctuations at both above and below T N. Our work uses muon spectroscopy to study the dynamic and static prop... Read More about Absence of quantum criticality and bulk 3D magnetism in green dioptase.

Luminescence characteristics of some common polyester fabrics: Application to emergency dosimetry (2017)
Journal Article
Bossin, L., Bailiff, I. K., & Terry, I. (2017). Luminescence characteristics of some common polyester fabrics: Application to emergency dosimetry. Radiation Measurements, 106, 436-442. https://doi.org/10.1016/j.radmeas.2017.05.017

A set of garment polyester-mix fabrics was tested for their potential suitability as surrogate dosimetry materials using optically and thermally stimulated luminescence techniques. A strong native blue-stimulated optically stimulated luminescence and... Read More about Luminescence characteristics of some common polyester fabrics: Application to emergency dosimetry.

A collapse of ferromagnetism in an organic based magnet under pressure (2017)
Journal Article
Berlie, A., Terry, I., Szablewski, M., Xiao, F., & Williams, R. C. (2017). A collapse of ferromagnetism in an organic based magnet under pressure. Materials Research Express, 4(2), Article 026103. https://doi.org/10.1088/2053-1591/aa5b50

The metal-organic charge transfer compound NiTCNQ2 has been subjected to pressure where both magnetisation and muon experiments show a suppression of T C with an applied pressure. At 12 kbar, it appears that the sample is paramagnetic and this gives... Read More about A collapse of ferromagnetism in an organic based magnet under pressure.