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Seminars

Exactly solved models of many-body quantum chaos

I will discuss the problem of unreasonable effectiveness of random matrix theory for description of spectral fluctuations in extended quantum lattice systems. A class of locally interacting spin systems has been recently identified where the spectral form factor is proven to match with gaussian or circular ensembles of random matrix theory, and where spatiotemporal correlation functions of local observables as well as some measures of dynamical complexity can

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Unconventional magnetism for quantum applications

For many years, since the beginning of the 19th century, the existence of magnetism in low dimensions has been both desired and controversial. It was long thought, that magnetic orders in low dimensional systems could not be realized at temperatures different from zero. At least, this was what the Mermin-Wagner

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Extraction of classical ergotropy

Finding the time dependent perturbation that extracts the maximal amount of energy (a.k.a. ergotropy) from a thermally isolated quantum system is a central, solved, problem in quantum thermodynamics. Notably, the same problem has been long studied for classical systems as well, e.g., in the field of plasma physics, but a general solution is still

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Advancing Quantum Cryptography at University of Malta

We will review the research areas currently developed at the Quantum Communication Group in Malta, with the aim of generating collaboration between the groups. Particular emphasis would be placed on novel security proof techniques and the optimization of quantum-classical channel capacity.

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On the integrability of the deformed Rule 54 model

I will discuss the integrability property of a stochastic and quantum deformation of the Rule 54 cellular automaton: the simplest microscopic (deterministic) reversible model in 1+1 discrete space and time dimensions with strong local interactions. First, I will introduce the Rule 54 model and its two deformations: In the stochastic

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Optimal control of mechanical systems in the quantum regime

Continuous-variable quantum systems enable encoding complex states in fewer modes through large-scale non-Gaussian states. Motion, as a continuous degree of freedom, underlies phenomena from Cooper pair dynamics to levitated macroscopic objects. Hence, realizing high-energy, spatially extended motional states remains key for advancing quantum sensing, simulation, and foundational tests. In the

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Nonclassicality in Quantum Key Distribution Links and Networks

Quantum key distribution is well known to be an essentially quantum task, which is not possible by purely classical means. After being suggested on the basis of strongly nonclassical single-photon states and direct photodetection in the discrete-variable approach, it was later extended to continuous variables, using Gaussian states and coherent

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Testing and using quantum physics

The foundations of quantum physics like superposition and entanglement put our everyday understanding of physical reality into question. At the same time, they provide the basis for a host of novel quantum applications. Entanglement will be the key resource for future quantum networks, where it will be used for quantum

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Fundamental Problems in Quantum Physics 2025

Date: 17th to 19th June 2025 Fifth school on quantum foundations dedicated to Prof. GianCarlo Ghirardi. Quantum Mechanics is extremely successful in predicting experimental results and has a vast range of applications. Nonetheless, many unanswered questions remain. The school will introduce Master and PhD students to the still outstanding problems

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Recent developments in quantum communication and quantum randomness

Within the last two decades, Quantum Technologies have made tremendous progress, from proof of principle demonstrations to real life applications, such as Quantum Key Distribution (QKD) and Quantum Random Number Generators (QRNGs). We will discuss the results that we have recently obtained in our group at the University of Padova

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Polariton Superfluids

It is possible to engineer the properties of photons in an optical medium to have an effective mass and repulsive interactions, so that they act like a gas of atoms These “renormalized photons” are called polaritons In the past decade, several experiments have demonstrated many of the canonical effects of

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Polaron physics in ultracold matter

The study of strongly correlated matter is a central focus in quantum many-body physics. Despite the inherent complexity of systems with numerous interacting components and degrees of freedom, such as Fermi liquids and superfluids, these systems can often be described by relatively simple and elegant quasiparticle models. A key example of

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New Quantum Computing Unit in Elettra Sincrotrone Trieste

Elettra Sincrotrone Trieste has established the SciQC unit for Scientific and Quantum Computing. The unit is part of its IT Group and consists of a diverse team of scientists and engineers from various disciplines. SciQC builds on prior experience in data analysis and mathematics and is tasked with exploring practical

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Fundamental Problems in Quantum Physics 2024

Date: 10th to 12th September 2024 Fourth school on quantum foundations dedicated to Prof. GianCarlo Ghirardi. Quantum Mechanics is extremely successful in predicting experimental results and has a vast range of applications. Nonetheless, many unanswered questions remain. The school will introduce Master and PhD students to the still outstanding problems

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Recent Trends in Quantum Computing and Quantum Technologies

Date: 19th September 2024 We are pleased to invite you to the one-day Symposium on “Recent Trends in Quantum Computing and Quantum Technologies” at the University of Trieste (Aula Stasi, Leonardo Building ICTP) on September 19th. This event marks the conclusion of this year’s “Colloquium Series in Theoretical and Computational

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Prime suspects and lucky numbers

Prime numbers play a crucial role in mathematics being the key elements for the factorization of the integers. The idea to use them for designing a quantum abacus has recently received a new support from the experimental realization of a single-particle quantum Schrodinger Hamiltonian whose eigenvalues are given by the

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Universality in long-range quantum systems

Diving into the fascinating realm of quantum systems, the seminar will offer a panoramic view of long-range interactions. Starting with an encompassing tour of critical phenomena in systems featuring power-law interactions 1/𝑟𝛼 at 𝛼 < 𝑑, we’ll unveil the intricate equilibrium scaling dependence on the power-law exponent α. We will

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Collapse models and their experimental tests

Testing the limits of validity of the superposition principle is of crucial importance in the foundations of quantum mechanics and the development of quantum technologies. A way to quantify possible breakdowns of the superposition principle is given by collapse models. These models modify the Schrödinger equation, by adding non-linear and

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Controlling the functionality of quantum materials by light

The physical properties of many complex Quantum Materials (QM), like transition metal oxides, are the results of a complex interplay among electrons, phonons, and magnons. This complexity makes the properties of QM highly susceptible to external factors such as pressure, doping, magnetic fields, or temperature. This leads to the intricate

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Quasi-probabilities in quantum mechanics: fundamental ideas and applications

In addition to the usual projective measurements, quantum mechanics allows for alternative ways to extract information from a quantum system. Some of these lead to a quasi-probability distribution for the observable measured which are not positively defined. In perfect analogy with the Wigner quasiprobability distribution, the presence of negative regions

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Complex Quantum Systems: Tackling A Frontier of our Quantum Knowledge

As the 21st century unfolds, quantum physics and information theory continue to increase their impact on science and modern technology. Today, a frontier of our current knowledge is made by Complex Quantum Systems: many-body, out-of-equilibrium, open quantum systems interacting with highly structured environments. From gauge theories to complex molecules and

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Data mining quantum simulators

Recent experiments with quantum simulators and noisy intermediate-scale quantum devices have demonstrated unparalleled capabilities of probing many-body wave functions, via directly probing them at the single quantum level via projective measurements. However, very little is known about how to interpret and analyze such huge datasets. This represents a fundamental challenge

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Artificial atoms in silicon and their photonic integration

Artificial atoms in solids are leading candidates for quantum networks, scalable quantum computing, and sensing, as they combine long-lived spins with mobile and robust photonic qubits. A central goal is to realize photonic platforms that can scale and individually address and control single atoms. Recently, silicon has emerged as a

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Quantum Machine Learning application at CERN

CERN has started its Quantum Technology Initiative in order to investigate the use of quantum technologies in High Energy Physics (HEP). A three-year roadmap and research programme has been defined in collaboration with the HEP and quantum-technology research communities. In this context, initial pilot projects have been set up at

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Two new quantum labs have been inaugurated

Trieste, January 23, 2023 – Two new laboratories for quantum physics at the University of Trieste have been inaugurated: the ArQuS laboratory (Artificial Quantum Systems), where artificial quantum systems will be studied through the control of individual atoms, and the  QCI (Quantum Communication and Information) laboratory for quantum communication.The laboratories

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Communication & Photonics

Researchers harness the quantum properties of light to realize secure telecommunications systems through Quantum Key Distribution (QKD). Several research projects aim at building a quantum communication infrastructure in the Region, with both a terrestrial segment, as well as a space segment. Research groups of: A. Bassi, A. Gregorio

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Qiskit Fall Fest in Trieste

The Qiskit Fall Fest unfolded successfully at the University of Trieste (UniTS) from November 15 to 17, 2023, orchestrated by local organizers Edoardo Zappia, Oxana Mishina, Fabio Anselmi, Alberto D’Onofrio, Luca Bortolussi, Angelo Bassi, Fabio Benatti, Marianna Giustino, and Emanuele Ballarin. Under the global organization of IBM Quantum, the event,

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AtomQT – Quantum Technologies with Ultra-Cold Atoms (2016-2020)

AtomQT is dedicated to propelling Europe to the forefront of the Second Quantum Revolution. The mission of AtomQT is to establish an extensive network of expert groups specializing in cold-atom quantum physics. This network will serve as a catalyst, accelerating the swift development and commercialization of quantum technology grounded in

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FastOrbit – Exploring Quantum Coherence with Fast Nuclear Qubits and Orbital Manipulation in Ytterbium Atom Arrays (MUR FARE 2022 – 2027)

The past decades have witnessed the development of a vivid scientific community around the topics of quantum technologies. One essential direction of research concerns the quest for robust quantum systems, which can preserve and optimally harness quantum coherence to perform operations unthinkable through the methods of classical physics. In particular,

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MAWI – Matter-Wave Interferometers (2022-2026)

MAWI is a European Doctoral Network under the Marie Sklodowska-Curie Action, currently in the phase of recruiting PhD students interested in the topics of ultra-cold atoms, matter waves, quantum sensing, and atomtronics. The objective of the MAWI project is to train young researchers in the emerging fields of matter-wave interferometry

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QTSpace – Quantum Technologies in Space (2017-2020)

The 20th century bequeathed a scientific and technological legacy marked by milestones like quantum mechanics and groundbreaking space missions. Both pursuits have paved new paths for expanding our understanding of nature, standing as true benchmarks of modern science. Quantum theory and space science constitute foundational elements of a robust research

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TEQ – Testing the Large-Scale Limits of Quantum Mechanics (2018-2022)

Microscopic systems can assume quantum configurations devoid of classical counterparts. However, as we transition toward the macroscopic domain, the potential for such non-classical behavior diminishes, leaving us with no evidence of quantum phenomena at larger scales. Why does this happen, and how does quantumness dissipate as we move beyond the

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QuFree (2023-2026)

The goal of the QuFree project is to establish a free-space communication link, meaning communication through the air, for the secure exchange of keys generated with quantum technology. Air serves as the medium for transmitting quantum communication complementary to optical fiber. Therefore, QuFree complements the Quantum FVG project, already funded

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Quantum FVG (2020-2023)

Quantum FVG envisions the creation of an inherently secure data transmission infrastructure on optical fiber based on quantum communication for the digital innovation of businesses and the regional Public Administration. The network links the three university entities (UniTS, UniUD, and Sissa) and involves the participation of additional regional research entities,

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QUID – Quantum Italy Deployment (2024-2026)

QUID (Quantum Italy Deployment) is set to initiate the deployment of the Quantum Communication Infrastructure (QCI) in Italy. QUID’s primary focus is on deploying systems and networks nationwide to test quantum communication technologies, with a specific emphasis on the quantum distribution of cryptographic keys and integration with existing communication systems.

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Atoms & Molecules

Researchers in the field of AMO physics dedicate their efforts to developing novel models, techniques and tools that enable the precise study and control of atoms and molecules. Their research contributes to advancing our understanding of atomic and molecular systems and underpins applications in quantum optics, as well as the

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Fundamentals

Research spans the mathematical and physical foundations of Quantum Mechanics, quantum information theory with emphasis of open quantum systems theory and the role of entanglement, quantum field theory and string theory, elementary particle physics. Research groups of: F. Anselmi, A. Bassi, F. Benatti, C. Braitenberg, M. Cirafici, L. Di Pietro,

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NQSTI – National Science and Technology Institute (PNRR, 2023-2026)

This initiative aims to establish the National Quantum Science and Technology Institute (NQSTI), a consortium that (i) will unite Italian entities engaged in competitive and innovative research in quantum science and technology (QST), and (ii) will foster future industrial innovation by serving as a platform for the transfer of novel

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2023 IQIS Conference in Trieste

The 15th Italian Quantum Information Science Conference (IQIS2023) convened in Trieste from September 18 to 22, 2023. Hosted by the University of Trieste, the conference marked a significant milestone as the inaugural event of the newly formed Italian Society for Quantum Sciences and Technologies (SISTEQ). It was also one of

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Trieste Quantum Games

Embracing the intrigue of quantum phenomena, a series of captivating talks unfolded across various iconic venues in Trieste, exploring the realms of quantum information, connectivity, light, and laboratory experiments. Wednesday, March 29 – Quantum Information TheoryGuest Speaker: Dr. Fabio Anzà The rendezvous took place at Caffè San Marco, Via Cesare

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