本书全面、系统地阐述了原子核物理学这门学科的基本内容,并对亚核子物理、天体物理以及核辐射测量等作了简要介绍。全书共分十三章,内容包括核的基本性质、放射性、核辐射测量、核力、核衰变、核结构、核反应、中子物理、核裂变和聚变、亚核子物理和天体物理等。书中着重叙述这些方面的基础知识和物理规律,同时适当介绍当前的一些进展情况。 为了便于读者自学,本书语言力求简明易懂,内容注意由浅入深,各章均有习题和答案。书末还附有供做习题用的“部分核素数据和粒子数据”和“常用物理常量”。 本书可作为大学物理类专业原子核物理课程的教材,并可供其他有关专业的师生和从事原子能研究和应用的人员参考。 本书是1981年出版的《原子核物理》(高等学校试用教材)的修订版。原版书于1987年获核工业部教材特等奖。1988年获全国高
《量子物理的非常规方法(英文版)》包括的内容有:Noncommutative physics;Moment of momentum;Perturbation theory;Model Hamiltonian;Perturbation method;Inclusion of degenerate levels;Free scalar field;Free scalar field等。
String theory is one of the most exciting and challenging areas of modern theoretical physics. It was developed in the late 1960s for the purpose of de-scribing the strong nuclear force. Problems were encountered that prevented this program from attaining plete success. In particular, it was realized that the dpectrum of a fundamental string contains an undesired massless spin-two particle. Quantum chromodynamics eventually proved to be the correct theory for describing the strong force and the properties of hadrons,New doors opened for string theory when in 1974 it was proposed to identify the massless spin-two particle in the string's spectrum with the graviton, the quantum of gravitation. String theory became then the most promising can-didate for a quantum theory of gravity unified with the other forces and has developed into one of the most fascinating the6ries of high-energy physics.
Recent years have brought a revival of work on string theory, which haeen a source of fascination since its origins nearly twenty years ago.There seems to be a widely perceived need for a systematic, pedagogical exposition of the present state of knowledge about string theory. We hope that thiook will help to meet this need. To give a prehensive account of such a vast topic as string theory would scarcely be possible,even in two volumes with the length to which these have grown. Indeed,we have had to omit many important subjects, while treating others only sketchily. String field theory is omitted entirely (though the subject of chapter 11 is closely related to light-cone string field theory). Conformal field theory is not developed systematically, though much of the background material needed to understand recent papers on this subject is presented in chapter 3 and elsewhere.
本书内容涵盖粒子物理基础、宇宙线的物理(加速、相互作用)和天文(起源、传播)问题及其探测方法。针对目前广为采用的大气簇射实验,本书侧重讨论了大气簇射中宇宙线各成分(包括强子、光子、μ子和中微子)的理论模型及数值模拟方法。书中的理论分析简明直观,密切结合实验,具有较强的针对性。读者通过本书可以对宇宙线这个学科有整体和适当深度的了解。本书适合作为物理学专业高年级本科生和研究生的入门教材。对粒子物理标准模型和天文学有基础性的了解有助于对本书的理解。本书亦适合工作在宇宙线领域的专家学者参考。
为了便于读者了解宇称不守恒思想突破的历史过程和科学文献,本书分三篇收录了相关文献。 篇收入了有关这一发现的重要理论和实验记录:李政道、杨振宁的论文《弱相互作用中宇称守恒质疑》,吴健雄和安布勒(E.Ambler)等的论文《β衰变中宇称守恒的实验检验》和布德(R.Budde)、克雷蒂安(M.Chretien)等的论文《1.3GeVπ-介子产生的不稳定重粒子的性质》。 第二篇收入的是,1986年11月22日在哥伦比亚大学物理系举行的“宇称不守恒发现30周年学术报告会”的有关历史文献。 第三篇主要为《李政道答(科学时报)记者问》、伯恩斯坦(J.Bernstein)的《宇称问题侧记》、富兰克林(A.Franklin)的《宇称不守恒的发现与未发现》等相关文献。
Myintentionisthatthisbookserveasareferenceworkoninteractingparticlesystems,andthatitbeusedasthebasisforanadvancedgraduatecourseonthissubject.Thebookshouldbeofinterestnotonlytomathematicians,butalsotoworkersinrelatedareassuchasmathematicalphysicsandmathematicalbiology.Theprerequisitesforreadingitaresolidone-yeargraduatecoursesinanalysisandprobabilitytheory,atthelevelofRoyden(1968)andChung(1974),respectively.Materialwhichisusuallycoveredinthesecourseswillbeusedwithoutment.Inaddition,afamiliaritywithanumberofothertypesofstochasticprocesseswillbehelpful.However,referenceswillbegivenwhenresultsfromspeizedpartsofprobabilitytheoryareused.Noparticularknowledgeofstatisticalmechanicsormathematicalbiologyisassumed.Whilethisisthefirstbook-lengthtreatmentofthesubjectofinteractingparticlesystems,anumberofsurveysofpartsofthefieldhaveappearedinrecentyears.AmongtheseareSpitzer(1974a),Holley(1974a),Sullivan(1975b),Liggett(1977b),Stroock(1978),Griffeath(1979a,1981),and
核科学技术是一门自然科学与技术科学相交叉的综合学科。经过几十年的发展,目前已形成几十个分支学科。本报告选择发展较为成熟、与国民经济密切相关且反映外核科技水平的分支学科开展重点研究。核科学技术研究是核能事业生存与发展的先导和基础,更是核能利用、核燃料循环、核技术应用产业发展的技术支撑。目前,我国在核科学与技术研究领域已经形成了一套包含基础研究、应用研究和工程研究的完整体系。 本报告分综合报告和20个专题报告,其目的是展现国外核科
本书为“十三五”国家重点出版物出版规划项目。全书阐述了量子物理学的基本原理和概念,共9章,包括导论、量子物理学中物理量的量值、能级、光子、实物粒子、不确定原理和测量理论、薛定谔波动力学、定态理论、基本粒子和它们的相互作用。作者在书中用了许多实验事实来说明量子物理学理论的根据,并特别着重于澄清对量子物理学的一些误解"书中还简要叙述了量子物理学在原子物理、分子物理、核物理和基本粒子等领域中的应用。
Thiookdescribesthepracticaltechniquesforconnectingthephenomenologyofparticlephysicswiththeacceptedmoderntheoryknownasthe'StandardModel'.TheStandardModelofelementaryparticleinteractionsistheoutstandingachievementofthepastfortyyearsofexperimentalandtheoreticalactivityinparticlephysics.ThiookgivesadetailedaccountoftheStandardModel,focussingonthetechniqueywhichthemodelcanproduceinformationaboutrealobservedphenomena.ThetextopenswithapedagogicaccountofthetheoryoftheStandardModel.Introductionstotheessentialcalculationtechniquesneeded,includingeffectivelagrangiantechniquesandpathintegralmethods,areincluded.ThemajorpartofthetextisconcernedwiththeuseoftheStandardModelinthecalculationofphysicalpropertiesofparticles.Rigorousandreliablemethods(radiativecorrectionsandnonperturbativetechniqueasedonsymmetriesandanomalies)areemphasized,butotherusefulmodels(suchasthequarkandSkyrmemodels)arealsodescribed.Thestrongandelectroweakinteractionsarenottreatedasindependentthreads,butratherarewoventogetherintoaunifiedphenomenologicalfab
本书全面、系统地阐述了原子核物理学这门学科的基本内容,并对亚核子物理、天体物理以及核辐射测量等作了简要介绍。全书共分十三章,内容包括核的基本性质、放射性、核辐射测量、核力、核衰变、核结构、核反应、中子物理、核裂变和聚变、亚核子物理和天体物理等。书中着重叙述这些方面的基础知识和物理规律,同时适当介绍当前的一些进展情况。为了便于读者自学,本书语言力求简明易懂,内容注意由浅入深,各章均有习题和答案。书末还有供做习题用的“部分核素数据和粒子数据”和“常用物理常量”。本书可作为大学物理类专业原子核物理课程的教材,并可供其他有关专业的师生和从事原子能研究和应用的人员参考。本书是1981年出版的《原子核物理》(高等学校试用教材)的修订版。原版书于1987年获核工业部教材特等奖。1988年获全国高等学校教
本书系统地总结了冲击波压缩科学在力学、物理和化学方面的研究成果,从冲击波压缩的基本概念出发,讲述了冲击波压缩科学的起源、良性学说和灾变学说,冲击波压缩下固体的弹性、塑性、加载波和卸载波等力学响,应,固体的压电、铁电、铁磁、电阻率、电极化等物理性质,以及冲击波压缩下固体的活化、改性、化学合成等化学效应。本书从力学、物理和化学的多学科角度,阐述了固体的强度效应、局域变形、高浓度缺陷等特性在冲击波压缩过程中的意义,介绍了冲击波压缩科学的发展方向。本书可作为力学、物理、化学、材料科学、地球和天体科学等专业高年级本科生和研究生的参考书,也可供动高压物理、爆炸与冲击动力学研究领域的科研人员参考使用,对国防、民用工程和新材料开发领域的工程技术人员有着重要的参考价值。
本书是《中国科学技术大学交叉学科基础物理教程丛书》中的一册,主要内容包括原子的电子结构、原子光谱、原子之间或与其他物质的碰撞过程和相互作用。本书可供综合性大学和理工类院校作为普通物理力学教科书或主要参考书,也可供大专院校物理教师和物理教学研究工作者参考。
When I first decided to write a book on string theory, more than ten years ago, my memories of my student years were much more vivid than they are today. Still, I remember that one of the greatest pleasures was finding a text that made a difficult subject accessible, and I hoped to provide the same for string theory. Thus, my first purpose was to give a coherent introduction to string theory, based on the Polyakov path integral and conformal field theory. No previous knowledge of string theory is assumed. I do assume that the reader is familiar with the central ideas of general relativity, such as metrics and curvature, and with the ideas of quantum field theory through non- Abelian gauge symmetry. Originally a full course of quantum field theory was assumed as a prerequisite, but it became clear that many students were eager to learn string theory as soon as possible, and that others had taken courses on quantum field theory that did not emphasize the tools needed for string theory. I have therefore tri