Quantum Engine


Book Description

In Quantum Engine, Zoltan J. Kiss builds upon the revolutionary ideas he introduced in his previous books, Energy Balance of Relativity and Quantum Energy and Mass Balance, and provides a blueprint for solving Earth's energy crisis. In this, his third book, Kiss takes the discussion of quantum energy and mass-energy balance to its logical conclusion-the quantum engine. Kiss's calculations prove that acceleration generates electricity. This energy comes from the transformation of blue-shift energy into electron flow. The quantum impact of Earth's gravitation on the speeding particles results in the generation of an electron surplus, a source of electricity. Kiss's groundbreaking original research demonstrates that this mass-energy balance approach is the key to unlocking Earth's energy future. The transformation of mass into energy and the retransformation of energy into mass can produce a limitless supply of energy via the quantum engine-our future source of energy.




Quantum Steampunk


Book Description

"The science-fiction genre known as steampunk juxtaposes futuristic technologies with Victorian settings. This fantasy is becoming reality at the intersection of two scientific fields-twenty-first-century quantum physics and nineteenth-century thermodynamics, or the study of energy-in a discipline known as quantum steampunk"--




Thermodynamics in the Quantum Regime


Book Description

Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from quantum theory and addresses thermodynamic phenomena which appear in finite-size, non-equilibrium and finite-time contexts. Blending together elements from open quantum systems, statistical mechanics, quantum many-body physics, and quantum information theory, it pinpoints thermodynamic advantages and barriers emerging from genuinely quantum properties such as quantum coherence and correlations. Owing to recent experimental efforts, the field is moving quickly towards practical applications, such as nano-scale heat devices, or thermodynamically optimised protocols for emergent quantum technologies. Starting from the basics, the present volume reviews some of the most recent developments, as well as some of the most important open problems in quantum thermodynamics. The self-contained chapters provide concise and topical introductions to researchers who are new to the field. Experts will find them useful as a reference for the current state-of-the-art. In six sections the book covers topics such as quantum heat engines and refrigerators, fluctuation theorems, the emergence of thermodynamic equilibrium, thermodynamics of strongly coupled systems, as well as various information theoretic approaches including Landauer's principle and thermal operations. It concludes with a section dedicated to recent quantum thermodynamics experiments and experimental prospects on a variety of platforms ranging from cold atoms to photonic systems, and NV centres.




Quantum Steampunk


Book Description

The Industrial Revolution meets the quantum-technology revolution! A steampunk adventure guide to how mind-blowing quantum physics is transforming our understanding of information and energy. Victorian era steam engines and particle physics may seem worlds (as well as centuries) apart, yet a new branch of science, quantum thermodynamics, reenvisions the scientific underpinnings of the Industrial Revolution through the lens of today's roaring quantum information revolution. Classical thermodynamics, understood as the study of engines, energy, and efficiency, needs reimagining to take advantage of quantum mechanics, the basic framework that explores the nature of reality by peering at minute matters, down to the momentum of a single particle. In her exciting new book, intrepid Harvard-trained physicist Dr. Nicole Yunger Halpern introduces these concepts to the uninitiated with what she calls "quantum steampunk," after the fantastical genre that pairs futuristic technologies with Victorian sensibilities. While readers follow the adventures of a rag-tag steampunk crew on trains, dirigibles, and automobiles, they explore questions such as, "Can quantum physics revolutionize engines?" and "What deeper secrets can quantum information reveal about the trajectory of time?" Yunger Halpern also describes her own adventures in the quantum universe and provides an insider's look at the work of the scientists obsessed with its technological promise. Moving from fundamental physics to cutting-edge experimental applications, Quantum Steampunk explores the field's aesthetic, shares its whimsy, and gazes into the potential of a quantum future. The result is a blast for fans of science, science fiction, and fantasy.




The Laws of Thermodynamics


Book Description

Presents a collection of essays that discuss the role of the sun in the solar system, and covers such topics as solar winds and storms, magnetism, sunspots, ultraviolet radiation, and solar energy.




Cepheus Atom


Book Description

The bombs fell. Nations wielded varied and monstrous weapons against one another. Fires, clouds of poison, and worse have swept the world. Now only the savage Wastes remain: haunted by mutants, deranged robots, and genegineered monstrosities. But from the fire, heroes and villains rise: tribals, survivors, mutants, all the warped remnants of Humanity. Armed with primitive weapons, pre-Collapse artifacts, and afflicted by strange mutations, they set forth to conquer the wastes, or at least to survive them. By spear and laser, they shall prevail - or die a horrible death. Cepheus Atom is a lightweight role-playing game where players assume the roles of survivors exploring a sci-fantasy post-apocalyptic world. This is, as some people call it, a "gonzo" apocalypse - expect sentient mutant animals and plants!, death-ray guns, and wild mutations, rather than the grimmer darkness of a more realistic apocalypse. The rules are designed for fast, "beer and pretzels" play, where players roll dice and blow up stuff between bites of pizza and sips of soft drink, all while enjoying an evening with friends. All you need to play are this booklet, a few six-sided dice, writing supplies, and your wild imagination.




Engines for Interstellar Ships


Book Description




QUANTUM ENERGY AND MASS BALANCE


Book Description

In his second book, Zoltan J Kiss brings his original research on the energy balance of relativity to a revolutionary conclusion. He proves that the quantum energy impact of the Earth provides mankind with an energy surplus, a gift, for us to use. His book is exciting reading even for non physicists. The quantum energy based explanations grant the book a specific value. Reading the book you will be participating in discussions - among many others - on the quantum energy and mass balance of the atomic structure of elements, the magnet, the speed of light, the plasma, the nature of water and fire, and on electric, hydrocarbon and nuclear engines. The author's relativistic quantum approach is fascinating. Proofs have been provided through mathematics but also supplemented with practical examples. Zoltan J Kiss successfully achieves his aim. He shows that we have a potential new energy source to exploit. This is the quantum energy impact of the motion of the Earth.




Programming Quantum Computers


Book Description

Quantum computers are poised to kick-start a new computing revolution—and you can join in right away. If you’re in software engineering, computer graphics, data science, or just an intrigued computerphile, this book provides a hands-on programmer’s guide to understanding quantum computing. Rather than labor through math and theory, you’ll work directly with examples that demonstrate this technology’s unique capabilities. Quantum computing specialists Eric Johnston, Nic Harrigan, and Mercedes Gimeno-Segovia show you how to build the skills, tools, and intuition required to write quantum programs at the center of applications. You’ll understand what quantum computers can do and learn how to identify the types of problems they can solve. This book includes three multichapter sections: Programming for a QPU—Explore core concepts for programming quantum processing units, including how to describe and manipulate qubits and how to perform quantum teleportation. QPU Primitives—Learn algorithmic primitives and techniques, including amplitude amplification, the Quantum Fourier Transform, and phase estimation. QPU Applications—Investigate how QPU primitives are used to build existing applications, including quantum search techniques and Shor’s factoring algorithm.




Frontiers of Nonequilibrium Statistical Physics


Book Description

The four-week period fran May 20 to June 16, 1984 was an intensive period of advanced study on the foundations and frontiers of nonequili brium statistical physics (NSP). During the first two weeks of this period, an advanced-study course on the "Foundations of NSP" was con ducted in Albuquerque under the sponsorship of the University of New Mexico Center for High-Technology Materials. This was followed by a two-week NATO Advanced Study Insti tute on the "Frontiers of NSP" in Santa Fe under the same directorship. Many Students attended both meetings. This book comprises proceedings based on those lectures and covering a broad spectrum of topics in NSP ranging fran basic problems in quantum measurement theory to analogies between lasers and Darwinian evolution. The various types of quantum distribution functions and their uses are treated by several authors. other tools of NSP, such as Langevin equations, Fokker-Planck equations, and master equations, are developed and applied to areas such as laser physics, plasma physics, Brownian motion, and hydrodynamic instabilities. The properties and experimental detection of squeezed states and antibunching are described, as well as experimental tests of the violation of Bell's inequality. Information theory, mean-field theory, reservoir theory, entropy maximization, and even a novel nonlinear generalization of quantum mechanics are used to discuss nonequilibrium phenanena and the approach toward thermodynamic equilibrium.