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20182020
most citedA highly accurate determination of absorbed power during nanomagnetic hyperthermia

12 citations · 12 across the 1 of their papers we have counts for

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physics.app-ph2020

Non-exponential magnetic relaxation in magnetic nanoparticles for hyperthermia

I. Gresits, Gy. Thuroczy, O. Sagi +6

Magnetic nanoparticle based hyperthermia emerged as a potential tool for treating malignant tumours. The efficiency of the method relies on the knowledge of magnetic properties of…

physics.app-ph2019

Ultrafast sensing of photoconductivity decay using microwave resonators

B. Gyüre-Garami, B. Blum, O. Sági +6

Microwave reflectance probed photoconductivity (or -PCD) measurement represents a contactless and non-invasive method to characterize impurity content in semiconductors. Major d…

physics.app-ph201912 cited

A highly accurate determination of absorbed power during nanomagnetic hyperthermia

I. Gresits, Gy. Thuróczy, O. Sági +7

Absorbed power of nanoparticles during magnetic hyperthermia can be well determined from changes in the quality factor ( factor) of a resonator, in which the radiofrequency (RF)…

physics.app-ph2018

Electronic properties of air-sensitive nanomaterials probed with microwave impedance measurements

B. G. Márkus, G. Csősz, O. Sági +10

Characterization of electronic properties of novel materials is of great importance for exploratory materials development and also for the discovery of new correlated phases. As se…

physics.app-ph2018

A highly accurate measurement of resonator -factor and resonance frequency

B. Gyüre-Garami, O. Sági, B. G. Márkus +1

The microwave cavity perturbation method is often used to determine material parameters (electric permittivity and magnetic permeability) at high frequencies and it relies on measu…