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Notion in network science of quantum information networks
Quantum complex networks are complex networks whose nodes are quantum computing devices. Quantum mechanics has been used to create secure quantum communications
Quantum_complex_network
Networks connecting quantum processors
Quantum networks form an important element of quantum computing and quantum communication systems. Quantum networks facilitate the transmission of information
Quantum_network
Type of recurrent neural network with random and non-trainable internal structure
classical and quantum mechanical, can be used to reduce the effective computational cost. The first examples of reservoir neural networks demonstrated
Reservoir_computing
Physical phenomenon
Superdense coding Quantum complex network Quantum mechanics Introduction to quantum mechanics Quantum computer Quantum cryptography Quantum nonlocality Heisenberg
Quantum_teleportation
Computer hardware technology that uses quantum mechanics
A quantum computer is a computer that represents and processes information using quantum states. Quantum computations exploit phenomena such as superposition
Quantum_computing
Study of graphs as a representation of relations between discrete objects
game Quantum complex network Dual-phase evolution Network partition Network science Network theory in risk assessment Network topology Network analyzer
Network_theory
Description of physical properties at the atomic and subatomic scale
disciplines, including quantum chemistry, quantum biology, quantum field theory, quantum technology, and quantum information science. Quantum mechanics can describe
Quantum_mechanics
Theory of quantum gravity merging quantum mechanics and general relativity
Loop quantum gravity (LQG) is a theory of quantum gravity that incorporates matter of the Standard Model into the framework established for the intrinsic
Loop_quantum_gravity
Class of variational quantum states
Neural Network Quantum States (NQS or NNQS) is a general class of variational quantum states parameterized in terms of an artificial neural network. It was
Neural_network_quantum_states
Interdisciplinary research area
classical and quantum processing, where computationally difficult subroutines are outsourced to a quantum device. These routines can be more complex in nature
Quantum_machine_learning
Application of quantum mechanics and chemistry to biology
symmetries in the complex may favor efficient energy transfer to the reaction center, mirroring perfect state transfer in quantum networks. Furthermore, experiments
Quantum_biology
Basic unit of quantum information
In quantum computing, a qubit (/ˈkjuːbɪt/) or quantum bit is a basic unit of quantum information, the quantum version of the classic binary bit. A qubit
Qubit
Model of quantum computing
In quantum information theory, a quantum circuit is a model for quantum computation, similar to classical circuits, in which a computation is a sequence
Quantum_circuit
Basic circuit in quantum computing
In quantum computing and specifically the quantum circuit model of computation, a quantum logic gate (or simply quantum gate) is a basic quantum circuit
Quantum_logic_gate
Computational benchmark
In quantum computing, quantum supremacy or quantum advantage is the goal of demonstrating that a programmable quantum computer can solve a problem that
Quantum_supremacy
Academic field
Network science is an academic field which studies complex networks such as telecommunication networks, computer networks, biological networks, cognitive
Network_science
timeline of quantum computing and communication. Erwin Schrödinger publishes a theorem setting the basis for quantum steering and the limits of quantum state
Timeline of quantum computing and communication
Timeline_of_quantum_computing_and_communication
Quantum mechanics idea
never interacted. This process may have application in quantum communication networks and quantum computing. Entanglement swapping has two pairs of entangled
Entanglement_swapping
2016 video game
Quantum Break is a 2016 action-adventure third-person shooter video game developed by Remedy Entertainment and published by Microsoft Studios. The game
Quantum_Break
Fringe hypothesis
The quantum mind or quantum consciousness is a group of hypotheses proposing that local physical laws and interactions from classical mechanics or connections
Quantum_mind
Graph representation in quantum mechanics
efficient. Tensor network states are the special case in which a tensor network represents a variational wave function of a quantum many-body system —
Tensor_network
Description of gravity using discrete values
Quantum gravity (QG) is a field of theoretical physics that seeks unification of the theory of gravity with the principles of quantum mechanics. It deals
Quantum_gravity
Interdisciplinary theory behind quantum computing
Quantum information science is an interdisciplinary field that combines the principles of quantum mechanics, information theory, and computer science
Quantum_information_science
Topological structure in loop quantum gravity
needed] A spin foam is analogous to quantum history.[why?] Spin networks provide a language to describe the quantum geometry of space. Spin foam does the
Spin_foam
Quantum-mechanical version of computer memory
of quantum information processing applications such as quantum network, quantum repeater, linear optical quantum computation or long-distance quantum communication
Quantum_memory
Quantum computing company
AI models and quantum software. The AI model compression platform, CompactifAI, delivers compressed AI models by applying tensor network techniques. With
Multiverse_Computing
Open-source software development kit
Qiskit (Quantum Information Software Kit) is an open-source, Python-based, high-performance software stack for quantum computing, originally developed
Qiskit
Computer programming for quantum computers
Quantum programming refers to the process of designing and implementing algorithms that operate on quantum systems, typically using quantum circuits composed
Quantum_programming
Quantum computing implementation
quantum computing is a branch of quantum computing and solid-state physics that implements superconducting electronic circuits as qubits in a quantum
Superconducting quantum computing
Superconducting_quantum_computing
Field of robotics, physics
Quantum robotics is an interdisciplinary field that investigates the intersection of robotics and quantum mechanics. This field, in particular, explores
Quantum_robotics
field and the local network topology.[clarification needed] Network dynamics Network topology Quantum complex network "Gradient Networks" (PDF). cnls.lanl
Gradient_network
Description of a quantum-mechanical system
function of a non-relativistic quantum-mechanical system. Its discovery was a significant landmark in the development of quantum mechanics. It is named after
Schrödinger_equation
Change of basis applied in quantum computing
In quantum computing, the quantum Fourier transform (QFT) is a linear transformation on quantum bits, and is the quantum analogue of the discrete Fourier
Quantum_Fourier_transform
Branch of physics seeking to explain chaotic dynamical systems in terms of quantum theory
Quantum chaos is a branch of physics focused on how chaotic classical dynamical systems can be described in terms of quantum theory. The primary question
Quantum_chaos
Simulators of quantum mechanical systems
Quantum simulators permit the study of a quantum system in a programmable fashion. In this instance, simulators are special purpose devices designed to
Quantum_simulator
American mathematical physicist (born 1979)
analysis of quantum dynamics on complex networks. His early work established the experimentally relevant universal models of adiabatic quantum computation
Jacob_Biamonte
Property of computational resources needed
In quantum information theory, magic is a property that quantifies the computational resources needed to describe quantum states beyond stabilizer states
Magic_(quantum_information)
Theoretical chemist
transformation-based down-foldings, tensor network algorithms, local quantum chemistry methods, quantum embeddings, and new quantum Monte Carlo algorithms. The scientific
Garnet_K.-L._Chan
Computational complexity of quantum algorithms
Quantum complexity theory is the subfield of computational complexity theory that deals with complexity classes defined using quantum computers, a computational
Quantum_complexity_theory
Information held in the state of a quantum system
Quantum information is the information of the state of a quantum system. It is the basic entity of study in quantum information science, and can be manipulated
Quantum_information
Research institute
The Center for Complex Quantum Systems is a research institute within the Department of Physics of The University of Texas at Austin in the United States
Center for Complex Quantum Systems
Center_for_Complex_Quantum_Systems
Applications of machine learning to quantum physics
method. The ability to experimentally control and prepare increasingly complex quantum systems brings with it a growing need to turn large and noisy data
Machine_learning_in_physics
Experimental technology level
Noisy intermediate-scale quantum (NISQ) computing is characterized by quantum processors containing up to 1,000 qubits which are not advanced enough yet
Noisy intermediate-scale quantum computing
Noisy_intermediate-scale_quantum_computing
American mathematician
problems and applications in networks, complex systems, and nonlinear systems". Mason Porter writes a blog called Quantum Chaotic Thoughts. From 2016 onwards
Mason_Porter
Proposed quantum computer implementation
photonically connected networks of remotely entangled ion chains, and combinations of these ideas. This makes the trapped-ion quantum computer system one
Trapped-ion_quantum_computer
2002 science fiction novel by Australian author Greg Egan
fundamental equations in "Quantum Graph Theory", which holds that physical existence can be precisely modelled by complex constructions of mathematical
Schild's_Ladder
Indian proposed quantum computer
India's first international quantum enclave that the country's first quantum computing-based telecommunications network link is operational between the
Quantum_computing_in_India
Deviations from local realism
theoretical physics, quantum nonlocality refers to the phenomenon by which the measurement statistics of a multipartite quantum system do not allow an
Quantum_nonlocality
Complexity Theory and Network Centric Warfare, citation count of 275 The Agile Organization: From Informal Networks to Complex Effects and Agility, citation
James_Moffat_(mathematician)
transferred to more complex systems like photosystem I. Engel and co-workers observed that the FMO complex exhibits remarkably long quantum coherence, but
Fenna–Matthews–Olson_complex
Research institute in Germany
Hori) Otto Hahn Group Quantum Networks (Andreas Reiserer) Theory of Quantum Matter (Richard Schmidt) Entanglement of Complex Quantum Systems (Norbert Schuch)
Max Planck Institute of Quantum Optics
Max_Planck_Institute_of_Quantum_Optics
Forecasting rules for quantum computing
causes the state to decay, losing quantum information. Extending coherence is critical for running complex quantum algorithms reliably. Named after Robert
Quantum computing scaling laws
Quantum_computing_scaling_laws
Theory of a quantum origin of consciousness
originates at the quantum level inside neurons (rather than being a product of neural connections). The mechanism is held to be a quantum process called
Orchestrated objective reduction
Orchestrated_objective_reduction
Force resulting from the quantisation of a field
particle physics. However, even the vacuum has a vastly complex structure, so all calculations of quantum field theory must be made in relation to this model
Casimir_effect
Unit of quantum information
A qutrit (or quantum trit) is a unit of quantum information that is realized by a 3-level quantum system (qudit with radix 3), that may be in a superposition
Qutrit
Quantum computing company
49.256613°N 122.9990452°W / 49.256613; -122.9990452 D-Wave Quantum Inc. is a quantum computing company with locations in Palo Alto, California and
D-Wave_Systems
Process of converting plaintext to ciphertext
attacks. Quantum computing uses properties of quantum mechanics to perform certain computations in ways that differ from classical computers. Quantum computers
Encryption
Relativistic wave equation in quantum mechanics
named. Within relativistic quantum mechanics, it suffers from numerous conceptual problems that are only resolved in quantum field theory, where the equation
Klein–Gordon_equation
Metric for a quantum computer's capabilities
error-prone qubits. Generally, the larger the quantum volume, the more complex the problems a quantum computer can solve. Alternative benchmarks include
Quantum_volume
Formulation of quantum mechanics
The path-integral formulation of quantum mechanics generalizes the action principle of classical mechanics. It replaces the classical notion of a single
Path-integral_formulation
Application of quantum theory mathematics to cognitive phenomena
Quantum cognition uses the mathematical formalism of quantum probability theory to model psychology phenomena when classical probability theory fails.
Quantum_cognition
Computational model used in machine learning
Predictive analytics Quantum neural network Support vector machine Spiking neural network Stochastic parrot Tensor product network Topological deep learning
Neural network (machine learning)
Neural_network_(machine_learning)
Optimization algorithms using quantum computing
Quantum optimization algorithms are quantum algorithms that are used to solve optimization problems. Mathematical optimization deals with finding the
Quantum optimization algorithms
Quantum_optimization_algorithms
Interpretation of quantum mechanics
philosophy of physics, QBism (pronounced "cubism") is an interpretation of quantum mechanics that takes an agent's actions and experiences as the central
QBism
Theoretical Physicist
Spanish theoretical physicist who specializes in quantum information science and quantum tensor networks. He is Ikerbasque Research Professor at the Donostia
Román_Orús
Means of studying the interaction of light and matter
Circuit quantum electrodynamics (circuit QED) provides a means of studying the fundamental interaction between light and matter (quantum optics). As in
Circuit quantum electrodynamics
Circuit_quantum_electrodynamics
Type of reservoir computer
state property and fading memory, so training of a quantum echo state network assisted by quantum noise has been reported experimentally. RNNs were rarely
Echo_state_network
Topological quantum error correcting code
The surface code is a topological quantum error correcting code, and an example of a stabilizer code, defined on a two-dimensional spin lattice. The first
Surface_code
Technology discipline within engineering
and file sharing, as well as complex real-time services like video conferencing and online gaming. The evolution of network engineering is marked by significant
Computer_network_engineering
Problem in physics and quantum mechanics
The quantum many-body problem is a general name for a vast category of physical problems pertaining to deriving the behavior of multi-particle systems
Many-body_problem
Hypothetical physical concept
gravitation and quantum mechanics. Even ignoring quantum mechanics, chaos theory is sufficient to guarantee that the future of any sufficiently complex mechanical
Theory_of_everything
Indian quantum physicist and technologist
Indian quantum physicist and technologist. He is the founder and CEO of the Indian startup company QpiAI specialised in the field of quantum computer
Nagendra_Nagaraja
Quantum algorithm for solving systems of linear equations
The Harrow–Hassidim–Lloyd (HHL) algorithm is a quantum algorithm for obtaining certain limited information about the solution to a system of linear equations
HHL_algorithm
Concept in quantum information theory
{\mathcal {H}}_{S}} be a finite-dimensional complex Hilbert space, and consider a generic (possibly mixed) quantum state ρ {\displaystyle \rho } defined on
Quantum_state_purification
Phenomenon resulting from the superposition of two waves
t)|^{2}dx=\int _{a}^{b}\Psi ^{*}(x,t)\Psi (x,t)dx} where * indicates complex conjugation. Quantum interference concerns the issue of this probability when the
Wave_interference
Device to determine relative phase shift
being used in a range of research topics efforts especially in fundamental quantum mechanics. The Mach–Zehnder interferometer is a highly configurable instrument
Mach–Zehnder_interferometer
Aspect of astrophysics history
arising from a quantum combinatorial structure. His investigations resulted in the development of spin networks. Because this was a quantum theory of the
History of loop quantum gravity
History_of_loop_quantum_gravity
Type of graph in mathematics and physics
In mathematics and physics, a quantum graph is a linear, network-shaped structure of vertices connected on edges (i.e., a graph) in which each edge is
Quantum_graph
Method of inferring the results of a computation without running a quantum computer
Counterfactual quantum computation is a method of inferring the result of a computation without actually running a quantum computer otherwise capable
Counterfactual quantum computation
Counterfactual_quantum_computation
2012 puzzle-platform video game
Quantum Conundrum is a puzzle-platform game developed by Airtight Games and published by Square Enix. It was directed by Portal lead designer Kim Swift
Quantum_Conundrum
Hypothetical approach to quantum gravity with emergent spacetime
Loll, Jan Ambjørn and Jerzy Jurkiewicz, is an approach to quantum gravity that, like loop quantum gravity, is background independent. This means that it
Causal dynamical triangulation
Causal_dynamical_triangulation
Restricted model of non-universal quantum computation
Boson sampling is a computational task particularly friendly to quantum computers as opposed to classical computers. As explained by Philip Ball, it "entails
Boson_sampling
Application of physics to the study of economics
exchange models of markets Long-range dependency Network theory Network science Thermoeconomics Quantum finance Sznajd model Greenberg, Max; Gao, H. Oliver
Econophysics
Quantum analog of probabilistic automata
In quantum computing, quantum finite automata (QFA) or quantum state machines are a quantum analog of probabilistic automata or a Markov decision process
Quantum_finite_automaton
Process in quantum computing
Quantum error correction (QEC) comprises a set of techniques used in quantum memory and quantum computing to protect quantum information from errors arising
Quantum_error_correction
Abstract model of quantum computation
finite-dimensional quantum systems (e.g. each cell is a qubit). Each cell has a neighborhood of other cells. Altogether these form a network of cells, which
Quantum_cellular_automaton
Research field in deep learning
complex, non-Euclidean data structures. Traditional deep learning models, such as convolutional neural networks (CNNs) and recurrent neural networks (RNNs)
Topological_deep_learning
2018 book by Adam Becker
published in 2018. Becker had been a member of the California Quantum Interpretation Network, "a research collaboration among faculty and staff at multiple
What_Is_Real?
Quantum algorithm for eigenvalue estimation
In quantum computing, the quantum phase estimation algorithm is a quantum algorithm to estimate the phase corresponding to an eigenvalue of a given unitary
Quantum phase estimation algorithm
Quantum_phase_estimation_algorithm
the network. This definition of entropy does not have a clear thermodynamical interpretation. The BGS entropy has been used in the context of quantum gravity
Braunstein–Ghosh–Severini entropy
Braunstein–Ghosh–Severini_entropy
Encryption technique
efficiently (assuming the existence of practical quantum networking hardware). A QKD algorithm uses properties of quantum mechanical systems to let two parties agree
One-time_pad
Interpretation of quantum mechanics
Relational quantum mechanics (RQM) is an interpretation of quantum mechanics which treats the state of a quantum system as being relational, that is,
Relational_quantum_mechanics
(quantum field theory) No-broadcasting theorem (quantum information theory) No-cloning theorem (quantum computation) No-communication theorem (quantum
List_of_theorems
Proposed spin-based quantum computer implementation
Nuclear magnetic resonance quantum computing (NMRQC) is one of the several proposed approaches for constructing a quantum computer, that uses the spin
Nuclear magnetic resonance quantum computer
Nuclear_magnetic_resonance_quantum_computer
Model in network science
The Bianconi–Barabási model is a model in network science that explains the growth of complex evolving networks. This model can explain that nodes with
Bianconi–Barabási_model
Encryption method in quantum mechanics
proposed for being used in quantum money as well as for joint checking accounts, quantum networking, and distributed quantum computing, among other applications
Quantum_secret_sharing
Quantum Computing company in Boston, Massachusetts
million expansion to its computing campus, planning to build a quantum computing complex. QuEra Computing was announced as a partner in the project. On
QuEra
Number with a real and an imaginary part
in two dimensions. The complex number field is intrinsic to the mathematical formulations of quantum mechanics, where complex Hilbert spaces provide the
Complex_number
Theorem in quantum information science
identical copy of an arbitrary unknown quantum state, a statement which has profound implications in the field of quantum computing among others. The theorem
No-cloning_theorem
Very general problem in computer science
important in the theory of quantum computing because Shor's algorithms for factoring and finding discrete logarithms in quantum computing are instances of
Hidden_subgroup_problem
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QUANTUM COMPLEX-NETWORK
QUANTUM COMPLEX-NETWORK
Girl/Female
Bengali, Indian
Good Complex
Biblical
fourth
Boy/Male
Tamil
Complete
Boy/Male
Hindu, Indian
Calm
Girl/Female
Arabic, Muslim
Complex; Zigzag; Curling
Girl/Female
Tamil
Complete
Boy/Male
Danish, Finnish, French, German, Latin, Shakespearean, Swedish
Born Fifth
Surname or Lastname
English
English : unexplained.Americanized form of German Koppler.
Girl/Female
Biblical
Fourth.
Girl/Female
Tamil
Complete
Boy/Male
Latin Biblical
Born fourth.
Surname or Lastname
English
English : habitational name from Coppull in Lancashire, recorded in the 13th century as Cophill, from Old English copp ‘peak’ + hyll ‘hill’.English : nickname from Old French curt peil ‘short hair’.Probably an Americanized spelling of German and Jewish Koppel or German and Dutch Kappel.
Surname or Lastname
English
English : habitational name, probably from Comley in Shropshire or Combley on the Isle of Wight; both are named with Old English cumb ‘valley’ + lēah ‘woodland clearing’.
Girl/Female
Muslim
Complex, Zigzag, Curling
Girl/Female
Hindu, Indian
Complex
Boy/Male
Tamil
Complete
Boy/Male
Tamil
Poornan | பூரà¯à®¨à®¾à®¨
Complete
Poornan | பூரà¯à®¨à®¾à®¨
Girl/Female
Tamil
Complete
Surname or Lastname
English
English : nickname from Middle English cointe, quointe ‘known’ (via Old French, from Latin cognitus ‘known’). The Middle English word was used in various senses, any of which could have given rise to the surname: ‘cunning’, ‘crafty’, ‘knowledgeable’ (especially about dress, hence ‘elegant’), ‘attractive’. The sense development continued with ‘odd’ or ‘unusual’, the normal meaning of the modern English word ‘quaint’.German and Dutch : variant of Quandt.
Surname or Lastname
English (Yorkshire)
English (Yorkshire) : habitational name from any of various places called Copley, for example in County Durham, Staffordshire, and Yorkshire, from the Old English personal name Coppa (apparently a byname for a tall man) or from copp ‘hilltop’ + lēah ‘woodland clearing’.
QUANTUM COMPLEX-NETWORK
QUANTUM COMPLEX-NETWORK
QUANTUM COMPLEX-NETWORK
QUANTUM COMPLEX-NETWORK
QUANTUM COMPLEX-NETWORK
QUANTUM COMPLEX-NETWORK
QUANTUM COMPLEX-NETWORK
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