论文标题

MSS和以前的精确数据组合的同源性共振CIRS

Combinative Isobaric Resonances CIRs by MSS and from previous precise data

论文作者

Gafarov, A.

论文摘要

弹性散射{12}^c(p,p,p,p {o} _)激发功能(EF)在能量范围内测量EP = 16-19.5 MEV,通过创新方法-MSS- MSS-在14 -Engle Magnectrograph(Apelsin)上通过创新方法 - MSS分辨率约为10 keV的方法。乌兹别克斯坦科学学院的(Tashkent)[1-9]。获得的EF具有与阈值和水平数据的精确一致性的异常范围[2,10-12]。在{12}^c自支撑靶标上进行测量,厚度为13 mg/cm2,在阿替辛(Apelsin)中心进行了1 cm2的面积。 20步能量主持人控制了质子能量,提供了3.5 meV宽的EP间隔,没有回顾的回旋子和41米长的梁管上的所有离子镜。蛋白用于质子的能量分辨率大于5 KEV。通过NMR-Monitor系统将光谱仪磁场稳定在3PPM上[1,9]。 {12}^c(p,p,p {o} _)散射的Ef具有许多与G.S.相对应的共振。和众所周知的产品核心水平。但是80%的异常并未解码。提议识别这些异常的新型组合同体共振(CIR)的新概念。提出的CIRS概念非常有前途(图4)。为了证明CIRS有效性,{12}^c(p,p,p {o} _),{12}^c(d,d,d,d {o} _)和{7}^li(p,p,p,p {o} _)进行分析,以搜索以寻找结合性异位含量的共鸣。这项研究完美地证明了CIR的存在。

The elastic scattering {12}^C(p,p{o}_) Excitation Function (EF) was measured in the energy range Ep =16 - 19.5 MeV with resolution about 10 keV by means of innovative approach - MSS - the Method of Spectra Superposition at the 14-angle Magnetic Spectrograph (Apelsin) at beam with an energy spread of about 200 keV from U-150 cyclotron of INP Ulugbek (Tashkent) of Science Academy of Uzbekistan [1-9]. The obtained EF has a reach structure of anomalies in precise agreement with thresholds and levels data [2,10-12]. Measurements were done on the {12}^C self-supporting target with thickness 13 mg/cm2 and an area of 1 cm2 in the center of Apelsin. The 20-step Energy Moderator controlled the proton energy, providing a 3.5 MeV wide Ep interval with no readjustment of cyclotron and all the ionic-optics on the 41-meter-long beam-pipe. Energy resolution of Apelsin for protons is better than 5 keV. The spectrograph magnetic field was stabilized to 3ppm by NMR-monitor system [1,9]. The EF of {12}^C (p,p{o}_) scattering has many resonances that precisely correspond to g.s. and levels of well-known product-nuclei. But 80% of anomalies were not decoded. A new concept of Combinative Isobaric Resonance (CIRs) proposed to identify these anomalies. The proposed CIRs concept worked very promising (Fig. 4). To prove CIRs validity, precise excitation function of {12}^C(p,p{o}_), {12}^C(d,d{o}_), and {7}^Li(p,p{o}_), were analyzed in search for the Combinative Isobaric Resonances. This study perfectly proves existence of CIRs.

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