{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"解析设计控制器,通过配置相应的李雅谱诺夫指数,使统一混沌系统趋于预期点.由于受控后系统李雅谱诺夫指数具有先知性,因此,我们可以根据需要改变李雅谱诺夫指数的大小来控制系统收敛速度.设计还表明,受控的统一混沌系统的收敛情况与参数无关.","authors":[{"authorName":"李国辉","id":"a87d9208-0f6c-4189-b9bd-ebc278e566d3","originalAuthorName":"李国辉"},{"authorName":"雷云逸","id":"14e8001b-cd35-4319-b4db-b18f74687765","originalAuthorName":"雷云逸"},{"authorName":"徐得名","id":"d483ede1-f372-4f69-8f66-3292818382c5","originalAuthorName":"徐得名"},{"authorName":"周世平","id":"994ece4e-2a84-4ceb-84b2-b905c11a2be4","originalAuthorName":"周世平"}],"doi":"10.3969/j.issn.1007-5461.2004.01.010","fpage":"39","id":"2ac637e0-2c08-47c3-9516-29ecd43ace59","issue":"1","journal":{"abbrevTitle":"LZDZXB","coverImgSrc":"journal/img/cover/LZDZXB.jpg","id":"53","issnPpub":"1007-5461","publisherId":"LZDZXB","title":"量子电子学报 "},"keywords":[{"id":"a819811e-bd0b-4552-8929-81a5ed93e840","keyword":"量子光学","originalKeyword":"量子光学"},{"id":"a6435ee1-87f2-4c1d-af2d-1cb48ef24c3b","keyword":"统一混沌系统","originalKeyword":"统一混沌系统"},{"id":"831db573-677f-47fe-8d3a-96cbffc7453f","keyword":"李雅谱诺夫指数","originalKeyword":"李雅谱诺夫指数"},{"id":"1c6a112f-e491-4f10-b9bc-4df3d8d3b045","keyword":"控制混沌","originalKeyword":"控制混沌"},{"id":"c53814f3-b4a5-472c-9bf6-e936ec1bab22","keyword":"Jacobi矩阵","originalKeyword":"Jacobi矩阵"}],"language":"zh","publisherId":"lzdzxb200401010","title":"用李雅谱诺夫指数配置法控制统一混沌系统","volume":"21","year":"2004"},{"abstractinfo":"应用李雅普诺夫控制理论,对含约瑟夫森结电荷量子比特系统的状态实施了有效调控.数值仿真表明:对超导电荷量子比特系统,采用基于偏差的李雅普诺夫控制方法,不管是间接还是直接调控形式,选取适当的控制幅度可以达到对量子系统的调控目的;并且增大控制幅度,得到的控制函数曲线更平滑,完成控制任务需要的时间越短.这种控制方法避免了传统控制方法所需要的复杂的迭代计算,可以确保量子系统的稳定.因此,李雅普诺夫方法是一种具有一定实用意义的调控方法.","authors":[{"authorName":"杨鑫","id":"355a2627-09a5-45f5-bf8a-8cf7be30c0ca","originalAuthorName":"杨鑫"},{"authorName":"胡菊菊","id":"648161c4-a2bc-4a97-86ce-f6ea68ff2c37","originalAuthorName":"胡菊菊"},{"authorName":"嵇英华","id":"9fd2d895-9d4c-45d1-a717-1992608894eb","originalAuthorName":"嵇英华"}],"doi":"10.3969/j.issn.1007-5461.2016.04.014","fpage":"476","id":"06738e05-4317-4df1-8630-a406c636bee4","issue":"4","journal":{"abbrevTitle":"LZDZXB","coverImgSrc":"journal/img/cover/LZDZXB.jpg","id":"53","issnPpub":"1007-5461","publisherId":"LZDZXB","title":"量子电子学报 "},"keywords":[{"id":"e1fe1bad-dc88-4fe6-8a3a-e3e50876af5b","keyword":"量子控制","originalKeyword":"量子控制"},{"id":"f460c13c-19f7-4dc5-9822-acaa5500d8f6","keyword":"超导量子比特","originalKeyword":"超导量子比特"},{"id":"ac2977e8-913a-46d9-8310-c0a4481ab6ab","keyword":"李雅普诺夫方法","originalKeyword":"李雅普诺夫方法"},{"id":"451f974a-a3d9-4e88-973b-997db2b86646","keyword":"约瑟夫森结","originalKeyword":"约瑟夫森结"}],"language":"zh","publisherId":"lzdzxb201604014","title":"基于偏差的李雅普诺夫方法超导量子比特系统调控","volume":"33","year":"2016"},{"abstractinfo":"采用炭布与预氧丝网胎交替叠层针刺成预制体,经CVI与HPIC相结合的致密工艺及石墨化处理制取高密度(1.80 g/cm3~1.85 g/cm3)C/C复合材料.所及材料的微观结构,力学、热学和烧蚀性能均达到国际同类刹车盘C/C材料的先进水平,是一种有广阔应用前景的烧蚀分离燃气舵材料.","authors":[{"authorName":"苏君明","id":"cd5685c2-e315-40de-b13f-8fefc7292920","originalAuthorName":"苏君明"},{"authorName":"崔红","id":"6e21f6db-4aa7-43a0-a3aa-4dfe628b38cf","originalAuthorName":"崔红"},{"authorName":"李瑞珍","id":"ccdc6453-b3f8-40ce-9874-d8a0b3e8c820","originalAuthorName":"李瑞珍"},{"authorName":"周绍建","id":"e0c5c451-79df-49e3-8771-b221d5bffd61","originalAuthorName":"周绍建"},{"authorName":"苏哲安","id":"2c1c11aa-aef3-4368-b243-01205dca4d2e","originalAuthorName":"苏哲安"},{"authorName":"李雅娣","id":"6dabb869-8a4c-4899-8126-1a0f37ca6764","originalAuthorName":"李雅娣"}],"doi":"10.3969/j.issn.1007-8827.2000.02.003","fpage":"11","id":"67d58ceb-bcc1-4115-b710-d4865a68be4e","issue":"2","journal":{"abbrevTitle":"XXTCL","coverImgSrc":"journal/img/cover/XXTCL.jpg","id":"70","issnPpub":"1007-8827","publisherId":"XXTCL","title":"新型炭材料"},"keywords":[{"id":"69795786-aa30-439c-bf77-c872a52df5b0","keyword":"针刺炭布","originalKeyword":"针刺炭布"},{"id":"04d8ad7b-0723-4c58-8e2f-93d024c21ca6","keyword":"C/C材料","originalKeyword":"C/C材料"},{"id":"05c82042-1acc-4db9-86bc-dedb855aadf9","keyword":"微观结构","originalKeyword":"微观结构"},{"id":"dac61a3a-af36-464b-bd6a-16cc2e0cdbbe","keyword":"力学性能","originalKeyword":"力学性能"},{"id":"95e0dd80-4076-4d0a-8095-c6c1261d24f2","keyword":"热学性能","originalKeyword":"热学性能"},{"id":"3176a7f9-fba8-4cb2-92ea-5f4e0a3e941d","keyword":"烧蚀性能","originalKeyword":"烧蚀性能"}],"language":"zh","publisherId":"xxtcl200002003","title":"新型针刺炭布C/C复合材料的结构与性能","volume":"15","year":"2000"},{"abstractinfo":"研究金属和复合材料基材上的氧化锆涂层对激光的防护性能,结合ZrO2/金属复合涂层的高温隔热性能和激光重熔法特点进行激光辐照试验,测试试件背壁温度,并进行扫描电镜分析激光辐照后破坏处的微观结构,试验结果表明:ZrO2涂层降低了烧蚀,隔热效果明显,为抗激光防护提供一种新的材料方法.","authors":[{"authorName":"李雅娣","id":"762f896e-0e86-408f-84f4-924852ae23ec","originalAuthorName":"李雅娣"},{"authorName":"吴平","id":"5dacd9e5-22de-4b86-8080-a690230157dc","originalAuthorName":"吴平"},{"authorName":"马喜梅","id":"29bb19b9-b3cd-4860-8ca9-7a7d77e7a8e8","originalAuthorName":"马喜梅"},{"authorName":"陶顺衍","id":"4ab8c8a7-7256-4b73-8d9a-e20bfa352ed2","originalAuthorName":"陶顺衍"}],"doi":"10.3969/j.issn.1001-3660.2008.03.026","fpage":"71","id":"8b091fa0-8ebb-4fd8-85e3-59cc0f56dde9","issue":"3","journal":{"abbrevTitle":"BMJS","coverImgSrc":"journal/img/cover/BMJS.jpg","id":"3","issnPpub":"1001-3660","publisherId":"BMJS","title":"表面技术 "},"keywords":[{"id":"bc0bda7f-2452-47eb-a89b-764e4d6d6aec","keyword":"氧化锆涂层","originalKeyword":"氧化锆涂层"},{"id":"0f388626-3cf6-4b14-93e7-c06c1c89d9eb","keyword":"激光","originalKeyword":"激光"},{"id":"63560fb9-05bb-4e55-af2e-54bda2431970","keyword":"防护","originalKeyword":"防护"}],"language":"zh","publisherId":"bmjs200803026","title":"氧化锆涂层在激光防护中的应用研究","volume":"37","year":"2008"},{"abstractinfo":"为了研究激光辐照时反射层对基材的防护作用,采用铝箔作为高反射层进行激光辐照对比试验.结果表明:铝箔高反射层的存在降低了激光辐照对基材的热烧蚀和热影响,这种防护方式对基材抗激光防护效果显著.","authors":[{"authorName":"吴平","id":"ec4cb6a9-e060-4836-a80f-98b9d8a4df4b","originalAuthorName":"吴平"},{"authorName":"李雅娣","id":"237a4feb-8578-4b58-b291-76d1ac11c92b","originalAuthorName":"李雅娣"},{"authorName":"马喜梅","id":"a2c33398-bec2-4a78-9bfd-16e41e0fe51c","originalAuthorName":"马喜梅"}],"doi":"10.3969/j.issn.1001-3660.2008.05.028","fpage":"82","id":"8570b126-8e92-4393-a600-ed8a7cd2fc96","issue":"5","journal":{"abbrevTitle":"BMJS","coverImgSrc":"journal/img/cover/BMJS.jpg","id":"3","issnPpub":"1001-3660","publisherId":"BMJS","title":"表面技术 "},"keywords":[{"id":"a4eeb4e3-aea9-40ca-934a-881e0cb17ae9","keyword":"反射层","originalKeyword":"反射层"},{"id":"ef0d3b8b-4e17-4981-ae94-302a9212fcfa","keyword":"激光防护","originalKeyword":"激光防护"},{"id":"9bbc9d8a-7515-4ecf-b04d-5b4c47c003ab","keyword":"试验研究","originalKeyword":"试验研究"},{"id":"f4170dc7-f278-4e45-8640-9d84800d3e9e","keyword":"铝箔","originalKeyword":"铝箔"},{"id":"f8c1190c-ecbb-41e9-b66f-cfc64ec39b2d","keyword":"激光辐照","originalKeyword":"激光辐照"}],"language":"zh","publisherId":"bmjs200805028","title":"表面反射层在激光防护上的作用","volume":"37","year":"2008"},{"abstractinfo":"<正> 一、为纪念李薰创办和主编《金属学报》,继承并发扬他毕生致力于科技进步的业绩,特设立《金属学报》纪念李薰奖金基金.二、基金来源是乐于赞助的科研单位、高等院校、企业、团体的捐赠.基金属于专款,全部存入银行,每年支取利息,直接用于奖励.","authors":[],"categoryName":"|","doi":"","fpage":"2","id":"53b5b4af-4a26-4ab3-9944-a079f1cdb6c6","issue":"2","journal":{"abbrevTitle":"JSXB","coverImgSrc":"journal/img/cover/JSXB.jpg","id":"48","issnPpub":"0412-1961","publisherId":"JSXB","title":"金属学报"},"keywords":[],"language":"zh","publisherId":"0412-1961_1985_2_2","title":"《金属学报》纪念李薰奖金基金简章","volume":"21","year":"1985"},{"abstractinfo":"<正> 1983年3月20日凌晨,《金属学报》的创刊人、主编李薰同志和我们永别了。 李薰同志1913年11月20日出生于湖南省邵阳县。1937年以优异成绩通过湖南省试,留学英国Sheffield大学,先后获得哲学博士和冶金学的科学博士学位。1950年受中国科学院郭沫若院长聘,翌年毅然回归祖国。历任中国科学院金属研究所所长,中国科学院","authors":[],"categoryName":"|","doi":"","fpage":"1","id":"e58ce4aa-af81-477f-8509-f13a621fe343","issue":"2","journal":{"abbrevTitle":"JSXB","coverImgSrc":"journal/img/cover/JSXB.jpg","id":"48","issnPpub":"0412-1961","publisherId":"JSXB","title":"金属学报"},"keywords":[],"language":"zh","publisherId":"0412-1961_1983_2_14","title":"深切悼念本刊创刊人、主编李薰同志","volume":"19","year":"1983"},{"abstractinfo":"防治水是矿山建设施工的重要环节.南李庄矿属于水文地质条件复杂的大水岩溶矿山,介绍了主井掘进-129 m水平突水及治水过程,在查清该矿区水文地质条件及矿井突水要因的基础上,为综合防治竖井掘进期间通过特殊地质构造段突水,提出相应的主井掘进帷幕注浆防治水技术及措施,并在掘进工程中收到了良好的应用效果,对类似特殊条件下的矿山井巷掘进工程具有借鉴意义.","authors":[{"authorName":"董华兴","id":"c08faef8-222f-4269-ab57-068e213c04a0","originalAuthorName":"董华兴"},{"authorName":"郑翠敏","id":"71818941-893c-450e-8900-6d9f7dc6d4f4","originalAuthorName":"郑翠敏"},{"authorName":"董凤霞","id":"ce559c6e-5477-4acc-96d6-55cc93294757","originalAuthorName":"董凤霞"},{"authorName":"韩建国","id":"d72c3f8a-9086-4000-8209-5e6a1f371d1d","originalAuthorName":"韩建国"}],"doi":"10.11792/hj20130209","fpage":"35","id":"50da3555-9182-4c83-b8b8-7c218b723d08","issue":"2","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"c8ee1711-e9ee-4c00-a471-1354d308bfe1","keyword":"大水矿山","originalKeyword":"大水矿山"},{"id":"5da58d6c-dff5-4998-b645-b63ba8ec37c0","keyword":"主井掘进","originalKeyword":"主井掘进"},{"id":"a29b56b2-06f6-49a2-9412-0a6cbd37c8f5","keyword":"特殊地质构造","originalKeyword":"特殊地质构造"},{"id":"49c4c65b-3993-4060-b81d-5caf117fa377","keyword":"突水","originalKeyword":"突水"},{"id":"5f22c680-f6b2-4312-8b46-fe823c71eddb","keyword":"防治","originalKeyword":"防治"}],"language":"zh","publisherId":"huangj201302009","title":"南李庄矿主井施工突水防治技术","volume":"34","year":"2013"},{"abstractinfo":"马扎拉金锑矿床位于西藏北喜马拉雅金锑成矿带.阐述了马扎拉金锑矿床矿床地质特征、金的赋存状态以及矿床地球化学特征,并对矿床成矿作用进行了探讨.研究结果表明,马扎拉金锑矿床严格受构造及层位的控制,金主要以裂隙金、包裹金和晶隙金3种形式赋存在黄铁矿、辉锑矿、石英及方解石中;流体包裹体类型主要为气液二相包裹体和含CO2三相包裹体,成矿温度在180~350℃之间,峰值为270℃,w(NaCl)为2.90%-5.56%,成矿流体为中低温低盐度的岩浆水与地热水混合流体,成矿物质来源于深源闪长质岩浆及周围地层.因此,其成矿作用为早期断陷盆地沉积地层经区域变质作用使成矿物质初步富集,中新世岩浆热液带来成矿物质叠加成矿.","authors":[{"authorName":"张建芳","id":"7658f114-e500-46be-b0e3-8608f2cc5c40","originalAuthorName":"张建芳"},{"authorName":"郑有业","id":"64525c37-fb0c-4b1e-9614-67f0298e4c0a","originalAuthorName":"郑有业"},{"authorName":"张刚阳","id":"42455c14-8028-464f-b108-e95530cf2aea","originalAuthorName":"张刚阳"},{"authorName":"龚瑞君","id":"8dc83812-4ff8-4194-8e1c-e9e22a8d7f58","originalAuthorName":"龚瑞君"}],"doi":"10.3969/j.issn.1001-1277.2011.01.005","fpage":"20","id":"fc72b9b0-4716-4324-98d0-758e8c9f4985","issue":"1","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"b28348e8-b47a-4ab9-93f6-ace50dc0f879","keyword":"地质特征","originalKeyword":"地质特征"},{"id":"53e3183d-7c32-41c3-bc29-de12181ed93f","keyword":"成矿作用","originalKeyword":"成矿作用"},{"id":"07e88acb-39c9-49bd-b156-7637bd5a09ad","keyword":"马扎拉金锑矿床","originalKeyword":"马扎拉金锑矿床"},{"id":"05a51271-168e-4c71-a5e8-4181213c5576","keyword":"北喜马拉雅成矿带","originalKeyword":"北喜马拉雅成矿带"}],"language":"zh","publisherId":"huangj201101005","title":"西藏北喜马拉雅马扎拉金锑矿床地质特征及成矿作用","volume":"32","year":"2011"},{"abstractinfo":"生物表面活性剂鼠李糖脂是微生物在一定条件下产生的次级代谢产物,其分子具有极性亲水基团和非极性亲油基团结构,通常表现出很高的表面活性和界面优先分配能力。可靠的分离提纯方法和成分鉴定手段是鼠李糖脂生产工艺成功的重要保证。实验通过好氧发酵培养铜绿假单胞菌CCTCCAB93066、酸沉降分离得到鼠李糖脂后,利用柱色谱提纯技术得到纯化的鼠李糖脂的单糖脂和二糖脂,最后采用高效液相色谱-质谱联用法进行成分鉴定。结果显示这两种鼠李糖脂均含有3种主要成分,其中单糖脂的主要成分为RhaC10C10、RhaC10C12-H2、RhaC10C12,二糖脂的主要成分为Rha2C10C10、Rha2C10C12-H2、Rha2C10C12。该研究结果表明,铜绿假单胞菌CCTCCAB93066是一种良好的鼠李糖脂产生菌;酸沉降-柱色谱技术可以用于鼠李糖脂的深度提纯,且有较好的效果;而高效液相色谱-质谱联用技术对鼠李糖脂成分鉴定具有灵敏度高和准确性好等优点,是一种较为可靠的检测方法。","authors":[{"authorName":"刘洋","id":"d92d9b1c-f72e-4fcf-bbb0-17ff46f70d06","originalAuthorName":"刘洋"},{"authorName":"钟华","id":"af1417aa-bf0d-49f8-9eb0-6b2c8a4caeb2","originalAuthorName":"钟华"},{"authorName":"刘智峰","id":"a85b6803-7235-4efb-aaf3-48d0169a372a","originalAuthorName":"刘智峰"},{"authorName":"蒋勇兵","id":"669bcaa0-edb9-4002-bb97-0e076d921aa7","originalAuthorName":"蒋勇兵"},{"authorName":"谈菲","id":"7a68e398-ba8e-4aad-9860-95e4ab4b8688","originalAuthorName":"谈菲"},{"authorName":"曾光明","id":"883e9227-a4f9-465b-9e06-8bf596ba6343","originalAuthorName":"曾光明"},{"authorName":"赖明勇","id":"5ac36d12-f1e6-4dc2-b5d9-e0755b6e4af4","originalAuthorName":"赖明勇"},{"authorName":"何益斌","id":"190cde84-4d27-458e-95f6-d82465b24718","originalAuthorName":"何益斌"}],"doi":"10.3724/SP.J.1123.2013.10026","fpage":"248","id":"8925555f-3d9f-488a-a5bf-6f13ce780e02","issue":"3","journal":{"abbrevTitle":"SP","coverImgSrc":"journal/img/cover/SP.jpg","id":"58","issnPpub":"1000-8713","publisherId":"SP","title":"色谱 "},"keywords":[{"id":"3a2adc8e-db6b-4699-86c7-84cccc1b8846","keyword":"酸沉降","originalKeyword":"酸沉降"},{"id":"84e0a9e7-ace6-49f3-b53c-88cf42990f69","keyword":"柱色谱","originalKeyword":"柱色谱"},{"id":"11e5b6d7-1de2-4c9b-b6b8-a2ac9450e7e2","keyword":"高效液相色谱-质谱联用","originalKeyword":"高效液相色谱-质谱联用"},{"id":"cb3bce2d-ee35-4f13-ad56-f29477f22bed","keyword":"鼠李糖脂","originalKeyword":"鼠李糖脂"},{"id":"534c9e67-8a9a-4802-b1e5-efb96c8e17f3","keyword":"铜绿假单胞菌","originalKeyword":"铜绿假单胞菌"},{"id":"fb340070-5f7a-4e09-b97b-1d5410d26af2","keyword":"生物表面活性剂","originalKeyword":"生物表面活性剂"}],"language":"zh","publisherId":"sp201403007","title":"生物表面活性剂鼠李糖脂的纯化与表征","volume":"","year":"2014"}],"totalpage":11,"totalrecord":109}