Inferring Grain Size Distributions from Magnetic Hysteresis in M-type Hexaferrites
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arXiv
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| Natura: | Preprint |
| Pubblicazione: |
2025
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| _version_ | 1866912429957447680 |
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| author | Ataei, Masoud Molaei, Mohammad Jafar Ataie, Abolghasem |
| author_facet | Ataei, Masoud Molaei, Mohammad Jafar Ataie, Abolghasem |
| contents | We develop a stochastic-dynamic framework to infer latent grain size distribution from magnetic hysteresis data in M-type hexaferrite materials, offering an alternative to imaging-based characterization. A stochastic nucleation-growth process yields a Modified Lognormal Power-law grain size distribution. This is combined with Brown's relation to obtain a coercivity probability distribution, which is embedded within a dynamic magnetization model. A key feature is the joint estimation of microstructural parameters, including the critical grain radius, through inverse optimization of full hysteresis loops. Experimental validation on hydrothermally synthesized strontium hexaferrite subjected to nitrogen treatment and recalcination reveals interpretable trajectories of nucleation, growth, and structural memory encoded in the magnetic response. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2506_12566 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Inferring Grain Size Distributions from Magnetic Hysteresis in M-type Hexaferrites Ataei, Masoud Molaei, Mohammad Jafar Ataie, Abolghasem Materials Science Data Analysis, Statistics and Probability Applications We develop a stochastic-dynamic framework to infer latent grain size distribution from magnetic hysteresis data in M-type hexaferrite materials, offering an alternative to imaging-based characterization. A stochastic nucleation-growth process yields a Modified Lognormal Power-law grain size distribution. This is combined with Brown's relation to obtain a coercivity probability distribution, which is embedded within a dynamic magnetization model. A key feature is the joint estimation of microstructural parameters, including the critical grain radius, through inverse optimization of full hysteresis loops. Experimental validation on hydrothermally synthesized strontium hexaferrite subjected to nitrogen treatment and recalcination reveals interpretable trajectories of nucleation, growth, and structural memory encoded in the magnetic response. |
| title | Inferring Grain Size Distributions from Magnetic Hysteresis in M-type Hexaferrites |
| topic | Materials Science Data Analysis, Statistics and Probability Applications |
| url | https://arxiv.org/abs/2506.12566 |