collaborators

6 papers

cond-mat.str-el2026

Spin correlations, low-energy scales, and anisotropy scaling in kagome frustrated magnets

Phillip Popp, Stephan Rosenkranz, Arthur P. Ramirez +1

Neutron scattering is central to identifying quantum states of magnetic materials. In the search for quantum spin liquids, broad spectral features of inelastic spectra have been ci…

cond-mat.mes-hall2026

A footprint of zero-point entropy in higher-temperature magnetic thermodynamics

Sergey Syzranov, Arthur P. Ramirez

Identifying extensively degenerate zero-temperature states is key in characterizing spin-liquid-candidate materials and spin ices. In experiments, finding zero-point entropy (ZPE)…

cond-mat.dis-nn2026

Specific-heat anomaly in frustrated magnets with vacancy defects

Muhammad Sedik, Siyu Zhu, Sergey Syzranov

Motivated by frustrated magnets and spin-liquid-candidate materials, we study the thermodynamics of a 2D geometrically frustrated magnet with vacancy defects. The presence of vacan…

cond-mat.str-el2025

Low-temperature entropies and possible states in geometrically frustrated magnets

Siyu Zhu, Arthur P. Ramirez, Sergey Syzranov

The entropy that an insulating magnetic material releases upon cooling can reveal important information about the properties of spin states in that material. In many geometrically…

cond-mat.str-el2025

Origin of the hidden energy scale and the -ratio in geometrically frustrated magnets

Phillip Popp, Arthur P. Ramirez, Sergey Syzranov

Sufficiently clean geometrically frustrated (GF) magnets are the largest class of candidate materials that may host quantum spin liquids (QSLs). Some of them have been shown to exh…

cond-mat.str-el2025

Short-range order and hidden energy scale in geometrically frustrated magnets

Arthur P. Ramirez, Sergey Syzranov

In geometrically frustrated (GF) magnets, conventional long-range order is suppressed due to the presence of primitive triangular structural units, and the nature of the ensuing gr…