輻射測量為介紹電離輻射探測和測量這一廣泛領(lǐng)域的最新發(fā)展提供了一個(gè)論壇。該雜志發(fā)表基礎(chǔ)研究和應(yīng)用研究的原始論文。該雜志尋求發(fā)表論文,介紹以下領(lǐng)域的進(jìn)展:自發(fā)發(fā)光和受激發(fā)光(包括閃爍材料、熱發(fā)光和光受激發(fā)光);天然和合成材料的電子自旋共振輻射測量的物理、設(shè)計(jì)和性能(包括電子傳輸模擬等計(jì)算模型);醫(yī)學(xué)物理學(xué)中輻射測量的新基本方面。能量轉(zhuǎn)移現(xiàn)象、軌道物理和微劑量學(xué)的研究也引起了該雜志的興趣。與該雜志有關(guān)的應(yīng)用,特別是在提出新檢測技術(shù)、新分析方法或新材料方面,包括:個(gè)人劑量學(xué)(包括劑量量、光子、中子和帶電粒子照射的主動(dòng)/電子和被動(dòng)監(jiān)測技術(shù));環(huán)境劑量學(xué)(包括與氡有關(guān)的方法學(xué)進(jìn)展和預(yù)測模型,但一般不包括以確定對人口的輻射危險(xiǎn)為主要目的的當(dāng)?shù)仉闭{(diào)查結(jié)果);宇宙和高能輻射測量(包括劑量測量、空間輻射效應(yīng)和單一事件干擾);基于劑量學(xué)的考古學(xué)和第四紀(jì)年代測定;基于劑量學(xué)的熱時(shí)計(jì)方法;事故和回顧性劑量測定(包括激活檢測器),以及與醫(yī)學(xué)應(yīng)用相關(guān)的劑量測定和測量。
Radiation Measurements provides a forum for the presentation of the latest developments in the broad field of ionizing radiation detection and measurement. The journal publishes original papers on both fundamental and applied research.The journal seeks to publish papers that present advances in the following areas: spontaneous and stimulated luminescence (including scintillating materials, thermoluminescence, and optically stimulated luminescence); electron spin resonance of natural and synthetic materials; the physics, design and performance of radiation measurements (including computational modelling such as electronic transport simulations); the novel basic aspects of radiation measurement in medical physics. Studies of energy-transfer phenomena, track physics and microdosimetry are also of interest to the journal.Applications relevant to the journal, particularly where they present novel detection techniques, novel analytical approaches or novel materials, include: personal dosimetry (including dosimetric quantities, active/electronic and passive monitoring techniques for photon, neutron and charged-particle exposures); environmental dosimetry (including methodological advances and predictive models related to radon, but generally excluding local survey results of radon where the main aim is to establish the radiation risk to populations); cosmic and high-energy radiation measurements (including dosimetry, space radiation effects, and single event upsets); dosimetry-based archaeological and Quaternary dating; dosimetry-based approaches to thermochronometry; accident and retrospective dosimetry (including activation detectors), and dosimetry and measurements related to medical applications.
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