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Optical Resonators - Science and Engineering (Hardcover, 1998 ed.): R. Kossowsky, Miroslav Jelinek, Josef Novak Optical Resonators - Science and Engineering (Hardcover, 1998 ed.)
R. Kossowsky, Miroslav Jelinek, Josef Novak
R6,370 Discovery Miles 63 700 Ships in 12 - 17 working days

This book contains most, but regrettably not all, the papers that were presented at The Advanced Research Workshop, held July 1-5, 1997, at Smolenice Castle, Slovak Republic. The problem of angular divergence is of great importance in quantum electronics: low divergence is required not only in most of practical laser applications, but also for achieving high efficiency of parametric laser frequency conversion, and harmonic generation. The large volume of available studies aimed at improving the pump systems and the spectroscopic properties of lasing media, brought about no more than 2-3 fold increases in laser efficiency, while concurrent studies of angular divergence and the implementation of the findings, resulted in several order of magnitude of increases in radiance. The spatial beam structure that is formed in the laser cavity together with the active element constitute the most critical laser elements. The engineering devices, such as excitation systems, lasing gas circulation systems, etc., are usually at the top of the agenda of scientific meetings and of gatherings of engineering experts. The divergence problem has never been discussed by a broad community of experts in this field.

High Power Lasers - Science and Engineering (Hardcover, 1996 ed.): R. Kossowsky, Miroslav Jelinek, Robert F. Walter High Power Lasers - Science and Engineering (Hardcover, 1996 ed.)
R. Kossowsky, Miroslav Jelinek, Robert F. Walter
R8,802 Discovery Miles 88 020 Ships in 12 - 17 working days

In the thirty years since the invention of the CO2 gas laser, the major design issue has shifted from how to obtain the desired power level to how to achieve reliable operation. At the same time, the opening of many laser development facilities in the Former Soviet Union has allowed their achievements and design approaches to be understood and appreciated for the first time. Further, the industrial laser user community has identified a number of emerging applications at higher power levels (15-20 kW) than are attainable by most commercial devices. In High Power Lasers - Science and Engineering, the designers, developers and users of high-power gas laser systems discuss design approaches, methods of enhancing performance, new applications, and user requirements.

Physics and Materials Science of High Temperature Superconductors, IV (Hardcover, 1997 ed.): R. Kossowsky, Miroslav Jelinek,... Physics and Materials Science of High Temperature Superconductors, IV (Hardcover, 1997 ed.)
R. Kossowsky, Miroslav Jelinek, Josef Novak
R6,335 Discovery Miles 63 350 Ships in 12 - 17 working days

Five questions dominated the ARW on Physics and Materials Science of High Temperature Superconductors, of which this book forms the permanent record. Briefly, these are: (i) How close are we to a unified theory? The consensus is that we are not. (ii) Flux pinning: can it be achieved in bulk materials? Still an open question. The following three questions are related. (iii) Can grain boundary contributions be brought under control? (iv) What is the real requirement for purity and general chemistry control? (v)What is the practical outlook for bulk products - tapes and wires? One of the conclusions is that the geometry and dimensions in thin films are the key parameters that facilitate the realization of high current densities and, consequently, their commercial application. On the other hand, the very large number of poorly understood microstructural, chemical and mechanical variables involved in the preparation of bulk materials are currently prohibiting large scale commercialization of wires and tapes.

Physics and Materials Science of High Temperature Superconductors, IV (Paperback, Softcover reprint of the original 1st ed.... Physics and Materials Science of High Temperature Superconductors, IV (Paperback, Softcover reprint of the original 1st ed. 1997)
R. Kossowsky, Miroslav Jelinek, Josef Novak
R5,540 Discovery Miles 55 400 Out of stock

Five questions dominated the ARW on Physics and Materials Science of High Temperature Superconductors, of which this book forms the permanent record. Briefly, these are: (i) How close are we to a unified theory? The consensus is that we are not. (ii) Flux pinning: can it be achieved in bulk materials? Still an open question. The following three questions are related. (iii) Can grain boundary contributions be brought under control? (iv) What is the real requirement for purity and general chemistry control? (v)What is the practical outlook for bulk products - tapes and wires? One of the conclusions is that the geometry and dimensions in thin films are the key parameters that facilitate the realization of high current densities and, consequently, their commercial application. On the other hand, the very large number of poorly understood microstructural, chemical and mechanical variables involved in the preparation of bulk materials are currently prohibiting large scale commercialization of wires and tapes.

High Power Lasers - Science and Engineering (Paperback, Softcover reprint of hardcover 1st ed. 1996): R. Kossowsky, Miroslav... High Power Lasers - Science and Engineering (Paperback, Softcover reprint of hardcover 1st ed. 1996)
R. Kossowsky, Miroslav Jelinek, Robert F. Walter
R8,309 Discovery Miles 83 090 Out of stock

In the thirty years since the invention of the CO2 gas laser, the major design issue has shifted from how to obtain the desired power level to how to achieve reliable operation. At the same time, the opening of many laser development facilities in the Former Soviet Union has allowed their achievements and design approaches to be understood and appreciated for the first time. Further, the industrial laser user community has identified a number of emerging applications at higher power levels (15-20 kW) than are attainable by most commercial devices. In High Power Lasers - Science and Engineering, the designers, developers and users of high-power gas laser systems discuss design approaches, methods of enhancing performance, new applications, and user requirements.

Optical Resonators - Science and Engineering (Paperback, Softcover reprint of hardcover 1st ed. 1998): R. Kossowsky, Miroslav... Optical Resonators - Science and Engineering (Paperback, Softcover reprint of hardcover 1st ed. 1998)
R. Kossowsky, Miroslav Jelinek, Josef Novak
R5,580 Discovery Miles 55 800 Out of stock

This book contains most, but regrettably not all, the papers that were presented at The Advanced Research Workshop, held July 1-5, 1997, at Smolenice Castle, Slovak Republic. The problem of angular divergence is of great importance in quantum electronics: low divergence is required not only in most of practical laser applications, but also for achieving high efficiency of parametric laser frequency conversion, and harmonic generation. The large volume of available studies aimed at improving the pump systems and the spectroscopic properties of lasing media, brought about no more than 2-3 fold increases in laser efficiency, while concurrent studies of angular divergence and the implementation of the findings, resulted in several order of magnitude of increases in radiance. The spatial beam structure that is formed in the laser cavity together with the active element constitute the most critical laser elements. The engineering devices, such as excitation systems, lasing gas circulation systems, etc., are usually at the top of the agenda of scientific meetings and of gatherings of engineering experts. The divergence problem has never been discussed by a broad community of experts in this field.

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