News tagged with quantum state

Searching for a solid that flows like a liquid

(PhysOrg.com) -- A series of neutron scattering experiments at Oak Ridge National Laboratory and other research centers is exploring the key question about a long-sought quantum state of matter called supersolidity: ...

Physics / Quantum Physics

created Feb 03, 2012 | popularity 4.3 / 5 (7) | comments 16 | with audio podcast

Many bodies make one coherent burst of light: Researchers see superfluorescence from solid-state material

In a flash, the world changed for Tim Noe – and for physicists who study what they call many-body problems. The Rice University graduate student was the first to see, in the summer of 2010, proof of a ...

Physics / General Physics

created Jan 30, 2012 | popularity 4.8 / 5 (4) | comments 5 | with audio podcast

Quantum physicists shed new light on relation between entanglement and nonlocality

(PhysOrg.com) -- New research from the University of Bristol may disprove a long-standing conjecture made by one of the founders of quantum information science: that quantum states featuring ‘positive partial transpose’, ...

Physics / Quantum Physics

created Jan 30, 2012 | popularity 4.6 / 5 (24) | comments 35 | with audio podcast

Seeing quantum mechanics with the naked eye

(PhysOrg.com) -- A Cambridge team have built a semiconductor chip that converts electrons into a quantum state that emits light but is large enough to see by eye. Because their quantum superfluid is simply ...

Physics / Quantum Physics

created Jan 09, 2012 | popularity 4.7 / 5 (44) | comments 4 | with audio podcast

New research could lead to enhanced MRI scans

New research from the University of Southampton could lead to enhanced MRI scans, producing brighter and more precise images, and potentially allowing the detection of cancerous cells before they cause health ...

Medicine & Health / Research

created Dec 15, 2011 | popularity not rated yet | comments 0

Atoms dressed with light show new interactions, could reveal way to observe enigmatic particle

(PhysOrg.com) -- Scientists at the Joint Quantum Institute (JQI) have for the first time engineered and detected the presence of high angular momentum collisions between atoms at temperatures close to absolute ...

Physics / Quantum Physics

created Dec 08, 2011 | popularity 4.6 / 5 (7) | comments 1 | with audio podcast

Topological matter in optical lattices

Atoms trapped by laser light have become excellent platforms for simulating solid state systems. These systems are also a playground for exploring quantum matter and even uncovering new phenomena not yet seen ...

Physics / Quantum Physics

created Nov 28, 2011 | popularity 5 / 5 (1) | comments 2

Through simple system studies, researchers are unearthing a new quantum state of matter

Researchers at the University of Pittsburgh have made advances in better understanding correlated quantum matter that could change technology as we know it, according to a study published in the Nov. 20 edition of Nature.

Physics / Quantum Physics

created Nov 21, 2011 | popularity 3.1 / 5 (18) | comments 8 | with audio podcast

Quantum error correction in solid state processing

(PhysOrg.com) -- "Liquid state Nuclear Magnetic Resonance (NMR) has been successful for quantum information processing,” Osama Moussa tells PhysOrg.com. “However, there are some questions about scalability and ot ...

Physics / Quantum Physics

created Nov 16, 2011 | popularity 4.3 / 5 (6) | comments 2 | with audio podcast feature

Electrically controlling magnetic polarization of nuclei offers new way to store quantum information

Storing information in long-lasting quantum states is a prerequisite for building quantum computers. Intrinsic properties of nuclei known as magnetic spins are good storage candidates because they interact ...

Physics / Quantum Physics

created Nov 11, 2011 | popularity 5 / 5 (4) | comments 0

Not 1, not 2, not 3, but 4 clones!

Xi-Jun Ren and Yang Xiang from Henan Universities in China, in collaboration with Heng Fan at the Institute of Physics of the Chinese Academy of Sciences, have produced a theory for a quantum cloning machine able to produce ...

Physics / General Physics

created Nov 04, 2011 | popularity 5 / 5 (2) | comments 2 | with audio podcast

New knowledge about 'flawed' diamonds could speed the development of diamond-based quantum computers

A University at Buffalo-led research team has established the presence of a dynamic Jahn-Teller effect in defective diamonds, a finding that will help advance the development of diamond-based systems in applications ...

Physics / Quantum Physics

created Oct 11, 2011 | popularity 4.3 / 5 (4) | comments 1 | with audio podcast

Advance offers new opportunities in chemistry education, research

Researchers at Oregon State University have created a new, unifying method to describe a basic chemical concept called "electronegativity," first described almost 80 years ago by OSU alumnus Linus Pauling ...

Chemistry / Materials Science

created Oct 04, 2011 | popularity 5 / 5 (3) | comments 3 | with audio podcast

Quantum physics is the focus of Nobel buzz

Three physicists whose research on entangled particles plays a key role in attempts to develop super-fast quantum computers could be in the running for the 2011 Nobel Prize in physics on Tuesday.

Physics / Quantum Physics

created Oct 04, 2011 | popularity 3.7 / 5 (3) | comments 0

Exotic quantum states: A new research approach

(PhysOrg.com) -- Theoretical physicists of the University of Innsbruck have formulated a new concept to engineer exotic, so-called topological states of matter in quantum mechanical many-body systems. They ...

Physics / Quantum Physics

created Oct 03, 2011 | popularity 4.7 / 5 (3) | comments 0

Quantum state

In quantum physics, a quantum state is a mathematical object that fully describes a quantum system. One typically imagines some experimental apparatus and procedure which "prepares" this quantum state; the mathematical object then reflects the setup of the apparatus. Quantum states can be statistically mixed, corresponding to an experiment involving a random change of the parameters. States obtained in this way are called mixed states, as opposed to pure states, which cannot be described as a mixture of others. When performing a certain measurement on a quantum state, the result generally described by a probability distribution, and the form that this distribution takes is completely determined by the quantum state and the observable describing the measurement. However, unlike in classical mechanics, the result of a measurement on even a pure quantum state is only determined probabilistically. This reflects a core difference between classical and quantum physics.

Mathematically, a pure quantum state is typically represented by a vector in a Hilbert space. In physics, bra-ket notation is often used to denote such vectors. Linear combinations (superpositions) of vectors can describe interference phenomena. Mixed quantum states are described by density matrices.

In a more general mathematical context, quantum states can be understood as positive normalized linear functionals on a C* algebra; see GNS construction.

For more information about Quantum state, read the full article at Wikipedia.
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