New quantum behaviours in one dimension

Swinburne researchers have discovered unexpected and entirely new quantum behaviors that only occur in one-dimensional systems, such as electrical current, in a new paper published in Physical Review Letters.

The paper explores a fundamental question in quantum physics: what happens when a single "impurity" particle, such as an atom or electron, is introduced into a tightly packed crowd of identical particles. See also the media report by Phys Org.

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Interpretations of macroscopic quantum paradoxes

Two articles have been published in the physics journal Entropy:

Realizing the Einstein-Podolsky-Rosen paradox for atomic clouds

A viewpoint article by Margaret Reid was published in the American Physical Society's journal Physics examining the implications of a recent experiment realizing the Einstein-Podolsy-Rosen paradox for atomic clouds.

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Finding all the Feynman diagrams for the Fermi polaron problem

Polaron has been a very active topic in solid-state physics and atomic physics. This study provides a general and exact theory to determine finite-temperature quasiparticle properties of Fermi polarons, which is important for the current exploration of polaron physics in cold-atom research and in condensed matter physics.

Interestingly, their work presents a very rare case that a quantum many-body system can be exactly solved by working out the complete Feynman diagrams. This non-trivial case may inspire future developments of more accurate diagrammatic theories of strongly correlated Fermi systems.

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Simulating Gaussian boson sampling quantum computers

A growing cohort of experimental linear photonic networks implementing Gaussian boson sampling (GBS) have now claimed quantum advantage. However, many open questions remain on how to effectively verify these experimental results, as scalable methods are needed that fully capture the rich array of quantum correlations generated by these photonic quantum computers.

This article reviews recent theoretical methods to simulate experimental GBS networks with a focus on methods using phase-space representations of quantum mechanics. A brief overview of the theory of GBS, recent experiments, and other types of methods are also presented.

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Quantum central limit theorems, emergence of classicality and time-dependent differential entropy

The Central Limit Theorem (CLT) is a cornerstone of statistics, serving as a powerful tool for making inferences about populations based on sample data. It states that even if a population does not have a normal distribution, the means of many samples drawn from it will form a normally distributed population under some general and mild conditions.

In the quantum domain, Professor Tien Kieu has now derived a Quantum Central Limit Theorem (QCLT) which serves as a powerful tool for understanding macroscopic behaviours of quantum systems. It provides a pathway for classical behaviours to emerge in the bulk from the random behaviour of quantum systems.

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Exact many-body solution for Fermi polarons

The behaviour of an impurity immersed in a Fermi sea – the so-called Fermi polaron – is a long-standing problem in condensed matter physics. Over the last 15 years, due to the unprecedented controllability, there are great efforts from ultracold atom community to quantitatively understand Fermi polaron.

Our researchers have proposed an exact solvable model of Fermi polarons in the heavy impurity limit and solved it by using a novel functional determinant approach (FDA). The key ingredient is the superfluid pairing gap of the many-body background, which strongly suppresses the multiple particle-hole excitations in the background BCS superfluid as the pair-breaking will cost energy.

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Second sound attentuation near quantum criticality

In collaboration with USTC Shanghai, we contribute to observing the second sound attentuation of a unitary Fermi gas near the superfluid transition. Various quantum transport coefficients, such as shear viscosity and thermal conductivity, have been determined with unprecedented accuracy.

This work accomplishes a quantitative experimental examination of the dissipative two-fluid hydrodynamic theory in the unitary Fermi gas and paves a new way for determining the universal critical scaling functions in the strongly interacting regime.

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Unconventional superconductivity of an altermagnetic metal: Polarized BCS and inhomogeneous Fulde-Ferrell-Larkin-Ovchinnikov states

Hui Hu, Zhao Liu and Xia-Ji Liu

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Resolving Schrödinger's analysis of the Einstein-Podolsky-Rosen paradox: an incompleteness criterion and weak elements of reality

Chris McGuigan, Run Yan Teh, Peter D. Drummond and Margaret D. Reid

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Complexity order of multiple resource algorithms

Run Yan Teh, Manushan Thenabadu and Peter D. Drummond

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Quantum Lifshitz points in an altermagnetic metal

Hui Hu and Xia-Ji Liu

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Validation tests of Gaussian boson samplers with photon-number resolving detectors

Alexander S. Dellios, Margaret D. Reid and Peter D. Drummond

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Exact polaron-polaron interactions in a Quantum Hall Fluid

Jia Wang, Xia-Ji Liu and Hui Hu

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Quantum factoring algorithm using Grover search

S. Whitlock and Tien D. Kieu

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Two-dimensional spectroscopic diagnosis of quantum coherence in Fermi polarons

Jia Wang, Hui Hu and Xia-Ji Liu

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Hidden causal loops, macroscopic realism and Einstein-Podolsky-Rosen-Bell correlations: forward-backward stochastic phase-space simulations

Margaret D. Reid and Peter D. Drummond

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Quantum stochastic phase-space theorems lead to hidden causal loops in a model for measurement consistent with macroscopic realism, Bell nonlocality and no-signaling

Margaret D. Reid and Peter D. Drummond

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Grassmann phase space theory for the BEC/BCS crossover in cold fermionic atomic gases

B. J. Dalton and N. M. Kidwani

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Beyond Gaussian pair fluctuation theory for strongly interacting Fermi gases II: The broken-symmetry phase

Brendan C. Mulkerin, Xing-Can Yao, Yoji Ohashi, Xia-Ji Liu and Hui Hu

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Exact theory of the finite-temperature spectral function of Fermi polarons with multiple particle-hole excitations: Diagrammatic theory versus Chevy ansatz

Hui Hu, Jia Wang and Xia-Ji Liu

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Breakdown of the single-mode description of ultradilute quantum droplets in binary Bose mixtures: A perspective from a microscopic bosonic pairing theory

Hui Hu, Jia Wang, Han Pu and Xia-Ji Liu

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Validation tests for GBS quantum computers give evidence for quantum advantage with a decoherent target

Alexander S. Dellios, Bogdan Opanchuk, Margaret D. Reid and Peter D. Drummond

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Exact calculation of spectral properties of a particle interacting with a one-dimensional Fermi gas in optical lattices

Xia-Ji Liu and Hui Hu

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Exact spectral properties of Fermi polarons in one-dimensional lattices: Anomalous Fermi singularities and polaron quasiparticles

Hui Hu, Jia Wang and Xia-Ji Liu

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When does a Fermi puddle become a Fermi sea? Emergence of pairing in two-dimensional trapped mesoscopic Fermi gases

Emma K. Laird, Brendan C. Mulkerin, Jia Wang and Matthew J. Davis

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Alternative Einstein-Podolsky-Rosen argument based on premises not falsified by Bell's theorem: weak macroscopic realism and weak local realism

Jesse Fulton, Run Yan Teh and Margaret D. Reid

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Macroscopic Wigner's friend paradoxes: Consistency with weak macroscopic realism

Ria Rushin Joseph, Manushan Thenabadu, Channa Hatharasinghe, Jesse Fulton, Run-Yan Teh, Peter D. Drummond and Margaret D. Reid

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Weak versus deterministic macroscopic realism, and Einstein-Podolsky-Rosen elements of reality

Jesse Fulton, Manushan Thenabadu, Run Yan Teh and Margaret D. Reid

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Diagonalizing the Jaynes-Cummings Hamiltonian and Jaynes-Cummings coherent states

Stephen M. Barnett and Bryan J. Dalton

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Theory of the spectral function of Fermi polarons at finite temperature

Hui Hu, Jia Wang and Xia-Ji Liu

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Can quantum theory be underpinned by a non-local hidden variable theory?

Bryan J. Dalton

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Super Fermi polaron and Nagaoka ferromagnetism on a two-dimensional square lattice

Hui Hu, Jia Wang and Xia-Ji Liu

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Spectral function of Fermi polarons at finite temperature from a self-consistent many-body T-matrix approach in real frequency

Hui Hu and Xia-Ji Liu

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Microscopic many-body theory of two-dimensional coherent spectroscopy of exciton-polarons in one-dimensional materials

Jia Wang, Hui Hu and Xia-Ji Liu

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Observation and quantification of pseudogap in unitary Fermi gases

Xi Li, Shuai Wang, Xiang Luo, Yu-Yang Zhou, Ke Xie, Hong-Chi Shen, Yu-Zhao Nie, Qijin Chen, Hui Hu, Yu-Ao Chen, Xing-Can Yao and Jian-Wei Pan

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Microscopic many-body theory of two-dimensional coherent spectroscopy of excitons and trions in atomically thin transition metal dichalcogenides

Hui Hu, Jia Wang and Xia-Ji Liu

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The sounds of science – a symphony for many instruments and voices: part II

Gerard’t Hooft, William D. Phillips, Anton Zeilinger, Roland Allen, Jim Baggott, François R. Bouchet, Solange M. G. Cantanhede, Lázaro A. M. Castanedo, Ana María Cetto, Alan A. Coley, Bryan J. Dalton, Peyman Fahimi, Sharon Franks, Alex Frano, Edward S. Fry, Steven Goldfarb, Karlheinz Langanke, Chérif F. Matta, Dimitri Nanopoulos, Chad Orzel, Sam Patrick, Viraj A. A. Sanghai, Ivan K. Schuller, Oleg Shpyrko and Suzy Lidström

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Discrete time crystals with absolute stability

Krzysztof Giergiel, Jia Wang, Bryan J. Dalton, Peter Hannaford and Krzysztof Sacha

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BCS-BEC crossover in a quasi-two-dimensional Fermi superfluid

Jing Zhou, Tingting Shi, Xia-Ji Liu, Hui Hu and Wei Zhang

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Fermi spin polaron and dissipative Fermi-polaron Rabi dynamics

Hui Hu and Xia-Ji Liu

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Simulating Gaussian boson sampling quantum computers

Alexander S. Dellios, Margaret D. Reid and Peter D. Drummond

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Thermally stable p-wave repulsive Fermi polaron without a two-body bound state

Hui Hu, Jia Wang and Xia-Ji Liu

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Realizing the Einstein-Podolsky-Rosen Paradox for Atomic Clouds

Margaret D. Reid

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A macroscopic quantum three-box paradox: Finding consistency with weak macroscopic realism

Channa Hatharsinghe, Manushan Thenabadu, Peter D. Drummond and Margaret D. Reid

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Mesoscopic and macroscopic quantum correlations in photonic, atomic and optomechanical systems

Run Yan Teh, Laura Rosales-Zarate, Peter D. Drummond and Margaret D. Reid

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Midpoint projection algorithm for stochastic differential equations on manifolds

Ria Rushin Joseph, Jesse van Rhijn and Peter D. Drummond

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xSPDE3: Extensible software for stochastic ordinary and partial differential equations

Simon Kiesewetter, Ria Rushin Joseph and Peter D. Drummond

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Codebase release 3.44 for xSPDE

Simon Kiesewetter, Ria Rushin Joseph and Peter D. Drummond

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Massive particle interferometry with lattice solitons: robustness against ionization

Piero Naldesi, Juan Polo, Peter D. Drummond, Vanja Dunjko, Luigi Amico, Anna Minguzzi and Maxim Olshanii

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Functional determinant approach investigations of heavy impurity physics

Jia Wang

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Two-dimensional coherent spectroscopy of trion-polaritons and exciton-polaritons in atomically thin transition metal dichalcogenides

Hui Hu, Jia Wang, Riley Lalor and Xia-Ji Liu

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Quantum central limit theorems, emergence of classicality and time-dependent differential entropy

Tien D. Kieu

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Glauber P-representations for fermions

Stephen M. Barnett and Bryan J. Dalton

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Multidimensional spectroscopy of time-dependent impurities in ultracold fermions

Jia Wang

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Raman spectroscopy of Fermi polarons

Hui Hu and Xia-Ji Liu

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Two-dimensional exciton-polariton interactions beyond the Born approximation

Hui Hu, Hui Deng and Xia-Ji Liu

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Second sound with ultracold atoms: A brief review

Hui Hu, Xing-Can Yao and Xia-Ji Liu

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Coherent Ising machine with quantum feedback: The total and conditional master equation methods

Simon Kiesewetter and Peter D. Drummond

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Superfluidity of a Raman spin-orbit-coupled Bose gas at finite temperature

Xiao-Long Chen, Xia-Ji Liu and Hui Hu

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Macroscopic delayed-choice and retrocausality: quantum eraser, Leggett-Garg and dimension witness tests with cat states

Manushan Thenabadu and Margaret D. Reid

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Bipartite Leggett-Garg and macroscopic Bell inequality violations using cat states: distinguishing weak and deterministic macroscopic realism

Manushan Thenabadu and Margaret D. Reid

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Exact quasiparticle properties of a heavy polaron in BCS Fermi superfluids

Jia Wang, Xia-Ji Liu and Hui Hu

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Heavy polarons in ultracold atomic Fermi superfluids at the BEC-BCS crossover: formalism and applications

Jia Wang, Xia-Ji Liu and Hui Hu

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Fermi polarons at finite temperature: Spectral function and rf-spectroscopy

Hui Hu and Xia-Ji Liu

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Simulating macroscopic quantum correlations in linear networks

Alexander S. Dellios, Peter D. Drummond, Bogdan Opanchuk, Run Yan Teh and Margaret D. Reid

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Crossover polarons in a strongly interacting Fermi superfluid

Hui Hu, Jia Wang, Jing Zhou and Xia-Ji Liu

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Second sound attenuation near quantum criticality

Xi Li, Xiang Luo, Shuai Wang, Ke Xie, Xiang-Pei Liu, Hui Hu, Yu-Ao Chen, Xing-Can Yao and Jian-Wei Pan

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Phase-space simulations of feedback coherent Ising machines

Simon Kiesewetter and Peter D. Drummond

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Simulating complex networks in phase space: Gaussian boson sampling

Peter D. Drummond, Bogdan Opanchuk, A. Dellios and Margaret D. Reid

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Full multipartite steering inseparability, genuine multipartite steering and monogamy for continuous variable systems

Run Yan Teh, Manuel Gessner, Margaret D. Reid and Matteo Fadel

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Photoexcitation measurement of Tan's contact for a strongly interacting Fermi gas

Jia Wang, Xia-Ji Liu and Hui Hu

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Interacting-fermion dynamics in Majorana phase-space

Ria Rushin Joseph, Peter D. Drummond and Laura E. C. Rosales-Zárate

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Discrete time crystals in Bose-Einstein condensates and symmetry-breaking edge in a simple two-mode theory

Jia Wang, Krzysztof Sacha, Peter Hannaford and Bryan J. Dalton

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First-order Bose-Einstein condensation with three-body interacting bosons

Hui Hu, Zeng-Qiang Yu, Jia Wan and Xia-Ji Liu

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Objective quantum fields, retrocausality and ontology

Peter D. Drummond and Margaret D. Reid

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Many-body effects and quantum fluctuations for discrete time crystals in Bose-Einstein condensates

J. Wang, P. Hannaford and B. J. Dalton

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Anderson localization transition in a robust PT-symmetric phase of a generalized Aubry-André model

Sebastian Schiffer, Xia-Ji Liu, Hui Hu and Jia Wang

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The fate of the false vacuum: Finite temperature, entropy and topological phase in quantum simulations of the early universe

King Lun Ng, Bogdan Opanchuk, Manushan Thenabadu, Margaret D. Reid and Peter D. Drummond

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The CGLMP Bell Inequalities

B. J. Dalton

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Time evolution with symmetric stochastic action

Peter D. Drummond

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Ultradilute self-bound quantum droplets in Bose-Bose mixtures at finite temperature

Jia Wang, Xia-Ji Liu and Hui Hu

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Arbitrary-angle rotation of the polarization of a dipolar Bose-Einstein condensate

S. B. Prasad, Brendan C. Mulkerin and A. M. Martin

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Dynamic structure factors of a strongly interacting Fermi superfluid near an orbital Feshbach resonance across the phase transition from BCS to Sarma superfluid

Peng Zou, Huaisong Zhao, Lianyi He, Xia-Ji Liu and Hui Hu

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Contact the Centre for Quantum Science and Technology Theory

There are many ways to engage with us. For more information about our centre, please email our centre director Professor Margaret Reid at mdreid@swinburne.edu.au.

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