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Thermomagnetic properties and its effects on Fisher entropy with … – Nature.com
The Nikiforov-Uvarov Functional Analysis (NUFA) method recently developed by Ikot et al.52 has been very helpful in providing solutions for exponential type potentials both in relativistic and nonrelativistic wave equations When using this method to solve either the Schrdinger or KleinGordon equation, the energy eigen equation is directly presented in a factorized, closed and compact form. This gives the method an edge over other methods. Meanwhile, the NUFA theory involves solving second order Schrdinger-like differential equation through the analytical combination of Nikiforov-Uvarov (NU) method and functional analysis approach53,54,55.
That flawed diamond could be a quantum physicist’s best friend – Princeton University
Shoppers like flawless diamonds, but for quantum physicists, the flaws are the best part. Senior Elisabeth Rlke has spent the past year using lasers and flawed diamonds tiny wafers of diamond with flaws the size of a single atom to develop a quantum sensor. The clear wafer at the center of the equipment is a diamond plate, precisely manufactured to be 2 mm on a side and .3 mm thick, with atomic-sized flaws at which Rlke and her adviser Nathalie de Leon shine green and orange lasers.
Uncovering universal physics in the dynamics of a quantum system – Phys.org
This article has been reviewed according to ScienceX's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: fact-checked peer-reviewed publication trusted source proofread New experiments using one-dimensional gases of ultra-cold atoms reveal a universality in how quantum systems composed of many particles change over time following a large influx of energy that throws the system out of equilibrium. A team of physicists at Penn State showed that these gases immediately respond, "evolving" with features that are common to all "many-body" quantum systems thrown out of equilibrium in this way.
IBM to Partner with US and Japanese Universities on Quantum … – Nextgov
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Advanced Quantum Material Curves the Fabric of Space – DISCOVER Magazine
Quantum materials offer many benefits to the future of electronic devices from batteries to sensors and even our smartphones.
Time is not an illusion. Its an object with physical size – Aeon
A timeless universe is hard to imagine, but not because time is a technically complex or philosophically elusive concept.
Are There Reasons to Believe in a Multiverse? – Quanta Magazine
By definition, the universe seems like it should be the totality of everything that exists.
Some black holes may actually be tangles in the fabric of space-time … – Livescience.com
Physicists have discovered a strange twist of space-time that can mimic black holes until you get too close.
Scrutinizing joint remote state preparation under decoherence … – Nature.com
Brukner, ., ukowski, M., & Zeilinger, A.: The essence of entanglement.
A New Subatomic Particle The Most Beautiful Strongly Bound … – SciTechDaily
Dibaryons, fascinating entities in nuclear and particle physics, represent a state of matter where two baryons, each consisting of three quarks, are bound together. The concept was first proposed in the context of quantum chromodynamics (QCD), the theory describing strong interactions between quarks and gluons. Scientists from the Tata Institute of Fundamental Research and The Institute of Mathematical Science have predicted the existence of a dibaryon particle, built entirely from bottom quarks.