This century has seen the development of technologies for manipulating and controlling matter and light at the level of individual photons and atoms, a realm in which physics is fully quantum-mechanical. The dominant experimental technology is the laser, and the theoretical paradigm is quantum optics.The Quantum World of Ultra-Cold Atoms and Light is a trilogy, which presents the quantum optics way of thinking and its applications to quantum devices. This book — 'Ultra-Cold Atoms' — provides a theoretical treatment of ultra-cold Bosons and Fermions and their interactions with electromagnetic fields in a form consistent with the first two books in the trilogy.The central concept is the quantum stochastic paradigm, formulated for cold collision physics. For Bosons, this yields a suite of techniques; versions of the stochastic Gross-Pitaevskii equation, using which a wide range of dynamic and thermal properties are formulated.The eBook editions of the 'Quantum World Trilogy' feature an extensive system of hyperlinks for ease of cross reference within the books, as well as links to the other books in the trilogy. In the section Viewing the eBooks we explain how these links work, and give some advice on appropriate pdf viewer applications.
The life story of John Rogers, first of the Protestant Martyrs under Queen Mary and editor of the first authorised English Bible; told as if in his own words, from a newly 'discovered' secret manuscript hidden in the walls of Newgate Prison. This historical fiction is based on a core of extraordinary historical fact, enlivened and elucidated by plausible fiction from the Martyr's twelve times great grandson. The story spans John Rogers' early, formative life in Deritend and exhilarating time at Cambridge, where the future leading lights of the English Reformation were gathered and famously congregated in The White Horse pub, otherwise known as 'Little Germany' in reference to the seat of European Reformation. On to Oxford and then, following several seminal experiences, into the Catholic Church, leading one of the London churches under the shadow of St Paul's. Circumstances and his conscience lead him then to Antwerp, where he encounters and is forever influenced by the Bible translator William Tyndale. Evangelical conversion follows for Rogers and after Tyndale's execution, it is Rogers who completes the Thomas Matthew Bible, the first authorised English Bible in the reign of Henry VIII. In Antwerp he also meets and marries the love of his life, Adriana - who becomes his lifelong companion and counsel and with whom he has eleven children. With Adriana he moves to the very heart of Reformation, Wittenberg, where he meets and befriends Philip Melanchthon, confidant to Martin Luther himself. A pastoral role in the Lutheran Church in Meldorf follows, where Rogers faces the challenge of taking on a congregation that had lynched their previous minister in a drunken riot. Meanwhile King Henry VIII's death heralds the ascension of his son King Edward VI, whose predisposition toward Protestantism under the influence of his reformist Council drives reformist policies forward. Rogers at last considers it safe to return to his homeland and is rewarded with the livings of St Sepulchre's in London and a Prebendary at St Paul's. Halcyon days for the reformists, but reversal follows on King Edward's untimely demise and the ascension to the contested throne of his sister, the Catholic Queen Mary. Called upon to preach at St Paul's Cross in these tumultuous and dangerous times, Rogers first adopts a cautious approach, adhering closely to uncontested aspects of the Gospel. But when called upon to do so again, just three weeks later, he senses his destiny and preaches boldly and bravely against what he sees as the errors, inequities and evils of the Papist Catholic Church at the time. Inevitably this leads to his arrest, initially house arrest, but subsequently imprisonment in the infamous Newgate Prison. Once the Privy Council has had reinstated the medieval Act directing the burning of heretics, Rogers is finally summoned before them to answer for his beliefs. Unwilling to betray his faith, he remains resolute under examination and is thus excommunicated and passed over to the civil authorities for sentencing to death by burning. His final day arrives and he goes boldly to meet his end – meeting his wife and eleven children, the last of whom he sees for the first and only time, on this his last walk as he passes St Sepulchre's on the way to Smithfield. Resolute to the last in his beliefs, Rogers shows extraordinary bravery in meeting his end, washing his hands in the flames and praising the Lord to his last breath whilst the watching crowd celebrate his faith and fortitude. His life, work and death will have lasting impact on the future of Reformation and Protestantism in England and the world for centuries to come.
This century has seen the development of technologies for manipulating and controlling matter and light at the level of individual photons and atoms, a realm in which physics is fully quantum mechanical. The dominant experimental technology is the laser, and the theoretical paradigm is quantum optics. The Quantum World of Ultra-Cold Atoms and Light is a trilogy, which presents the quantum optics way of thinking and its applications to quantum devices. This book — Foundations of Quantum Optics — provides an introductory text on the theoretical techniques of quantum optics, containing the elements of what one needs to teach, learn, and “think” about quantum optics. There is a particular emphasis on the classical and quantum stochastic methods which have come to dominate the field. Book II will cover applications to quantum devices, such as quantum computers and simulators, and will include the more advanced techniques necessary to describe non-classical light fields. Book III will cover the field of ultra-cold atoms, for which the quantum-optical paradigm has proved to be highly applicable for quantitative work. For more information, please visit: http://europe.worldscientific.com/quantum-world-of-ultra-cold-atoms-and-light.html
This century has seen the development of technologies for manipulating and controlling matter and light at the level of individual photons and atoms, a realm in which physics is fully quantum-mechanical. The dominant experimental technology is the laser, and the theoretical paradigm is quantum optics. The Quantum World of Ultra-Cold Atoms and Light is a trilogy, which presents the quantum optics way of thinking and its applications to quantum devices. This book — The Physics of Quantum-Optical Devices — provides a comprehensive treatment of theoretical quantum optics. It covers applications to the optical manipulation of the quantum states of atoms, laser cooling, continuous measurement, quantum computers and quantum processors, superconducting systems and quantum networks. The subject is consistently formulated in terms of quantum stochastic techniques, and a systematic and thorough development of these techniques is a central part of the book. There is also a compact overview of the ideas of quantum information theory. The main aim of the book is to present the theoretical techniques necessary for the understanding of quantum optical devices, with special attention to those devices used in quantum information processing and quantum simulation. Although these techniques were developed originally for the optical regime, they are also applicable to electromagnetic radiation from the microwave realm to the ultra-violet, and for atomic systems, Josephson junction systems, quantum dots and nano-mechanical systems. For more information, please visit: http://europe.worldscientific.com/quantum-world-of-ultra-cold-atoms-and-light.html
This book offers a systematic and comprehensive exposition of the quantum stochastic methods that have been developed in the field of quantum optics. It includes new treatments of photodetection, quantum amplifier theory, non-Markovian quantum stochastic processes, quantum input--output theory, and positive P-representations. It is the first book in which quantum noise is described by a mathematically complete theory in a form that is also suited to practical applications. Special attention is paid to non-classical effects, such as squeezing and antibunching. Chapters added to the previous edition, on the stochastic Schrödinger equation, and on cascaded quantum systems, and now supplemented, in the third edition by a chapter on recent developments in various pertinent fields such as laser cooling, Bose-Einstein condensation, quantum feedback and quantum information.
Butterflies are found everywhere in British Columbia. Written for butterfly watchers, butterfly gardeners, naturalists, and biologists, Butterflies of British Columbia will provide years of enjoyment for the butterfly enthusiast. The Butterflies of British Columbia � provides the most complete coverage of species and subspecies of any North American regional or continental butterfly book � covers 187 species and 264 subspecies of butterflies, as well as 9 additional hypothetical species � provides descriptions of identifying features, immature stages, larval foodplants, biology and life history, range and habitat, and conservation status for each species � describes 11 new subspecies � includes introductory chapters covering the history, zoogeography, conservation, morphology, ecology, and biology of butterflies in BC and adjacent areas � is lavishly illustrated with over 1,200 colour photographs and over 200 distribution maps � includes a glossary of butterfly terms and a bibliography of over 750 citations.
Features include: jargon-free language with well-tried, real-world examples; useful tips for managers at the end of each chapter; a comprehensive bibliography at the end of the book. It is also highly informative for graduate and undergraduate engineering students and ideally suited for establishing a web-based design management system for geographically dispersed teams. Changes in the second edition: New case studies. Expanded text in each chapter (about 50 new pages worth) including a wholly new chapter on the analysis of the design process as a whole.
The National Geographic Kids Ultimate U.S. Road Trip Atlas includes easy-to-read, simple road maps of each state and Washington, D. C., along with a map of the United States. State symbols, cool things to do, boredom busters, fun facts, wacky roadside attractions and games accompany the maps and provide engaging information with stunning photographs that will keep kids busy for hours.
From the churches and street corners of Harlem and The Bronx to the underground clubs of the East Village, New York City has been a musical mecca for generations, and Rock & Roll Explorer Guide to New York City is the definitive story of its development throughout the five boroughs. Plug in and walk the same streets a young Bob Dylan walked. See where Patti Smith, the Ramones, Beastie Boys, and Jeff Buckley played. Visit on foot the places Lou Reed mentions in his songs or where Paul Simon grew up; where the Strokes drowned their sorrows, Grizzly Bear cut their teeth and Jimi Hendrix found his vision. Rock and Roll Explorer Guide gives fans a behind-the-scenes look at how bands came together, scenes developed, and classic songs were written. Artists come and go, neighborhoods change, venues open and close, but the music lives on. Contents Upper Manhattan and Harlem Upper West Side The Velvet Underground Upper East Side The Beatles John & Yoko Central Park Patti Smith Midtown West Beastie Boys Midtown East Madonna Chelsea & Hudson Yards Jimi Hendrix & Electric Lady Union Square & Madison Square New York Dolls West Village Bob Dylan East Village Blondie Soho & TriBeCa Sonic Youth Lower East Side The Strokes Brooklyn Talking Heads Queens Ramones Simon & Garfunkel The Bronx Kiss Staten Island Rock & roll may not have been born in New York, but this is one of the places it grew up and blew up and presented itself to the world. From the churches and street corners of Harlem and the Bronx to the underground clubs of the East Village, New York City has been a musical Mecca for generations, and The Rock & Roll Explorer Guide to New York City is an historical journey through its development across all five boroughs. The Rock & Roll Explorer Guide to New York City restores a sense of time and place to music history by identifying and documenting critical points of interest spanning genres and eras, and delineating the places in New York City critical to its musical development and ultimate triumphs and tragedies. Through this lens, we can see and understand how bands came together, scenes developed, and classic songs were written. In some cases, the buildings are still there, in others only the address remains, but you still get a sense of the history that happened there. Among the many locations in this book are addresses musicians and other key rock & roll figures once called home. In a very few instances we’ve included current addresses, but only when the location is historically significant and widely known; otherwise, we consciously left current residences out. The Rock & Roll Explorer Guide to New York City is intended as a fun travel guide through music history rather than a means of locating famous musicians. Most New Yorkers understand that everyone has a right to privacy. That’s one of the reasons many of these artists live here. Because of the city’s rich history, this book cannot be a comprehensive encyclopedia of music, rock venues, or the music industry; nor do we present the definitive biographies of the musicians included. The artists and locations chosen represent a sometimes broad look at the history of rock & roll in the city, with an eye on those who either grew up or spent their formative years here. But there’s so much more we couldn’t include, and we hope readers will be inspired to go even further, whether they’re hitting the streets themselves or experiencing the city vicariously from afar. Artists come and go, neighborhoods change, venues open and close, but the music lives on.
This book offers a systematic and comprehensive exposition of the quantum stochastic methods that have been developed in the field of quantum optics. It includes new treatments of photodetection, quantum amplifier theory, non-Markovian quantum stochastic processes, quantum input--output theory, and positive P-representations. It is the first book in which quantum noise is described by a mathematically complete theory in a form that is also suited to practical applications. Special attention is paid to non-classical effects, such as squeezing and antibunching. Chapters added to the previous edition, on the stochastic Schrödinger equation, and on cascaded quantum systems, and now supplemented, in the third edition by a chapter on recent developments in various pertinent fields such as laser cooling, Bose-Einstein condensation, quantum feedback and quantum information.
A directory to five hundred job, resume, and career management sites on the World Wide Web, listed in alphabetical order, and cross-referenced to highlight each site's features, services, or restrictions.
This annual review of the best career Websites continues to be an indispensable reference for job seekers, corporate recruiters, and career counselors. Crispin and Mehler do enormous research--they analyze thousands of Websites, then review the top 500 for this book.
An exclusive directory to connect talent and opportunity on the Internet, this book is a tool to help professionals develop new opportunities and network successfully in the increasingly competitive, global job market. Job seekers and recruiters alike will get an edge with this must-have guide that it updated by the Authors each month via e-mail.
This century has seen the development of technologies for manipulating and controlling matter and light at the level of individual photons and atoms, a realm in which physics is fully quantum mechanical. The dominant experimental technology is the laser, and the theoretical paradigm is quantum optics. The Quantum World of Ultra-Cold Atoms and Light is a trilogy, which presents the quantum optics way of thinking and its applications to quantum devices. This book — Foundations of Quantum Optics — provides an introductory text on the theoretical techniques of quantum optics, containing the elements of what one needs to teach, learn, and “think” about quantum optics. There is a particular emphasis on the classical and quantum stochastic methods which have come to dominate the field. Book II will cover applications to quantum devices, such as quantum computers and simulators, and will include the more advanced techniques necessary to describe non-classical light fields. Book III will cover the field of ultra-cold atoms, for which the quantum-optical paradigm has proved to be highly applicable for quantitative work. For more information, please visit: http://europe.worldscientific.com/quantum-world-of-ultra-cold-atoms-and-light.html
This century has seen the development of technologies for manipulating and controlling matter and light at the level of individual photons and atoms, a realm in which physics is fully quantum-mechanical. The dominant experimental technology is the laser, and the theoretical paradigm is quantum optics.The Quantum World of Ultra-Cold Atoms and Light is a trilogy, which presents the quantum optics way of thinking and its applications to quantum devices. This book — 'Ultra-Cold Atoms' — provides a theoretical treatment of ultra-cold Bosons and Fermions and their interactions with electromagnetic fields in a form consistent with the first two books in the trilogy.The central concept is the quantum stochastic paradigm, formulated for cold collision physics. For Bosons, this yields a suite of techniques; versions of the stochastic Gross-Pitaevskii equation, using which a wide range of dynamic and thermal properties are formulated.The eBook editions of the 'Quantum World Trilogy' feature an extensive system of hyperlinks for ease of cross reference within the books, as well as links to the other books in the trilogy. In the section Viewing the eBooks we explain how these links work, and give some advice on appropriate pdf viewer applications.
This century has seen the development of technologies for manipulating and controlling matter and light at the level of individual photons and atoms, a realm in which physics is fully quantum-mechanical. The dominant experimental technology is the laser, and the theoretical paradigm is quantum optics. The Quantum World of Ultra-Cold Atoms and Light is a trilogy, which presents the quantum optics way of thinking and its applications to quantum devices. This book — The Physics of Quantum-Optical Devices — provides a comprehensive treatment of theoretical quantum optics. It covers applications to the optical manipulation of the quantum states of atoms, laser cooling, continuous measurement, quantum computers and quantum processors, superconducting systems and quantum networks. The subject is consistently formulated in terms of quantum stochastic techniques, and a systematic and thorough development of these techniques is a central part of the book. There is also a compact overview of the ideas of quantum information theory. The main aim of the book is to present the theoretical techniques necessary for the understanding of quantum optical devices, with special attention to those devices used in quantum information processing and quantum simulation. Although these techniques were developed originally for the optical regime, they are also applicable to electromagnetic radiation from the microwave realm to the ultra-violet, and for atomic systems, Josephson junction systems, quantum dots and nano-mechanical systems. For more information, please visit: http://europe.worldscientific.com/quantum-world-of-ultra-cold-atoms-and-light.html
This century has seen the development of technologies for manipulating and controlling matter and light at the level of individual photons and atoms, a realm in which physics is fully quantum-mechanical. The dominant experimental technology is the laser, and the theoretical paradigm is quantum optics. The Quantum World of Ultra-Cold Atoms and Light is a trilogy, which presents the quantum optics way of thinking and its applications to quantum devices. This book -- "Ultra-Cold Atoms" -- provides a theoretical treatment of ultra-cold Bosons and Fermions and their interactions with electromagnetic fields in a form consistent with the first two books in the trilogy. The book covers five main areas The physics of cold collisions, binding of atoms into molecules, and Feshbach resonances, Bose-Einstein condensation, at zero temperature, and at finite temperature, Quantum kinetic theory, Ultra-cold Fermions, Atoms in optical lattices. The central concept is the quantum stochastic paradigm, formulated for cold collision physics. For Bosons, this yields a suite of techniques; versions of the stochastic Gross-Pitaevskii equation, using which a wide range of dynamic and thermal properties are formulated. The eBook editions of the "Quantum World Trilogy" feature an extensive system of hyperlinks for ease of cross reference within the books, as well links to the other books in the trilogy. In the section Viewing the eBooks we explain how these links work, and give some advice on appropriate pdf viewer applications. For more information, please visit: http://europe.worldscientific.com/quantum-world-of-ultra-cold-atoms-and-light.html
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