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Young-Sik Ra

Korea Advanced Institute of Science and Technology · Computer Science

About the Lab

Professor Young-Sik Ra's research lab specializes in photonic quantum technologies, focusing on the manipulation and control of quantum states of light for advanced quantum information processing. Key research directions include the development of non-Gaussian operations—such as mode-tunable single-photon subtraction—for continuous-variable quantum computing, the realization of remote state preparation with reduced resource overhead, and the heralding of multiphoton entangled states with full control over phase and amplitude. The lab also investigates foundational aspects of quantum measurement, including weak measurement reversal and information erasure, with applications in quantum metrology and error mitigation.

quantum opticscontinuous-variable quantum computingsingle-photon subtractionremote state preparationquantum state heralding

Research Overview

Papers
74
Total Citations
603
Papers (5y)
19
Primary Field
Computer Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
19total
2022
2023
2024
2025
2026
Citations per year (5y)
35total
20222023202420252026

Selected Papers

15
1
Article|78 citations·2013
Nonmonotonic quantum-to-classical transition in multiparticle interference
Young-Sik Ra, Malte C. Tichy, Hyang‐Tag Lim, Osung Kwon, Florian Mintert, Andreas Buchleitner, Yoon-Ho Kim
SJR Q1Proceedings of the National Academy of SciencesOA

Quantum-mechanical wave-particle duality implies that probability distributions for granular detection events exhibit wave-like interference. On the single-particle level, this leads to self-interference--e.g., on transit across a double slit--for photons as well as for large, massive particles, provided that no which-way information is available to any observer, even in principle. When more than one particle enters the game, their specific many-particle quantum features are manifested in correl

Artificial IntelligenceComputer Science
2
Article|47 citations·2017
Tomography of a Mode-Tunable Coherent Single-Photon Subtractor
Young-Sik Ra, Clément Jacquard, Adrien Dufour, Claude Fabre, Nicolas Treps
SJR Q1Physical Review XOA

Single-photon subtraction plays important roles in optical quantum information processing as it provides a non-Gaussian characteristic in continuous-variable quantum information. While the conventional way of implementing single-photon subtraction based on a low-reflectance beam splitter works properly for a single-mode quantum state, it is unsuitable for a multimode quantum state because a single photon is subtracted from all multiple modes without maintaining their mode coherence. Here, we exp

Artificial IntelligenceComputer Science
3
Article|42 citations·2013
Observation of detection-dependent multi-photon coherence times
Young-Sik Ra, Malte C. Tichy, Hyang‐Tag Lim, Osung Kwon, Florian Mintert, Andreas Buchleitner, Yoon-Ho Kim
SJR Q1Nature CommunicationsOA
Artificial IntelligenceComputer Science
4
Article|29 citations·2016
Remote preparation of three-photon entangled states via single-photon measurement
Young-Sik Ra, Hyang‐Tag Lim, Yoon-Ho Kim
SJR Q1Physical review. A/Physical review, AOA

Remote state preparation (RSP) provides an indirect way of transferring quantum information based on the nonlocal effect of quantum measurement. Although RSP has been demonstrated in recent years to remotely prepare multiphoton states, quantum measurement on the same number of additional photons was required, i.e., to prepare $N$-photon states via RSP, quantum measurement on the other $N$-photons was required, hence significantly limiting practicality and applicability of RSP. Here we report an

Artificial IntelligenceComputer Science
5
Article|22 citations·2025
Generation of three-dimensional cluster entangled state
Chan Roh, Geunhee Gwak, Young-Do Yoon, Young-Sik Ra
SJR Q1Nature Photonics
Artificial IntelligenceComputer Science
6
Article|10 citations·2010
Reversing the Weak Quantum Measurement for a Photonic Qubit
Yong‐Su Kim, Young‐Wook Cho, Young-Sik Ra, Yoon-Ho Kim

We demonstrate the conditional reversal of a weak quantum measurement on a photonic qubit. The state recovery fidelity, determined by quantum process tomography, is shown to be over 94% for partial-collapse strength up to 0.9. We also experimentally study information gain due to the weak measurement and discuss the role of the reversing operation as an information erasure.

Artificial IntelligenceComputer Science
7
Article|10 citations·2015
Phase and amplitude controlled heralding of N00N states
Young-Sik Ra, Hyang‐Tag Lim, Joo-Eon Oh, Yoon-Ho Kim
SJR Q1Optics ExpressOA

Entangled photons, an essential resource in quantum technology, are mostly generated in spontaneous processes, making it impossible to know if the quantum state is available for use; giving only a posteriori knowledge of the quantum state via destructive photon detection processes. There are schemes for heralding the generation of entangled photons but the heralding schemes developed to date only inform the generation of a predetermined quantum state with no capability of state control. Here, we

Artificial IntelligenceComputer Science
8
Article|7 citations·2017
Tomography of mode-tunable coherent single-photon subtractor
Young-Sik Ra, Clément Jacquard, Adrien Dufour, Claude Fabre, Nicolas Treps

Summary form only given. Single-photon subtracting operation plays important roles in photonic quantum information processing. For example, it enables distillation of entanglement, noiseless amplification of a quantum state, and enhancement of measurement precision. In particular, the non-Gaussian characteristic of the operation is essential for genuine speed-up and universality of continuous-variable quantum computing. Until now, implementation of single-photon subtraction has been limited on a

Artificial IntelligenceComputer Science
9
Article|5 citations·2014
Nonmonotonic quantum-to-classical transition in multiparticle interference
Young-Sik Ra, Malte C. Tichy, Hyang‐Tag Lim, Osung Kwon, Florian Mintert, Andreas Buchleitner, Yoon-Ho Kim
Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE

We experimentally demonstrate the non-monotonic dependence of genuine many-particle interference signals on the particles' mutual distinguishability. Our theoretical analysis shows that such non-monotonicity is a generic feature of the quantum to classical transition in multiparticle correlation functions of more than two particles.

Artificial IntelligenceComputer Science
10
Article|5 citations·2014
Comment on ‘Non-monotonic projection probabilities as a function of distinguishability’
Young-Sik Ra, Malte C. Tichy, Hyang‐Tag Lim, Osung Kwon, Florian Mintert, Andreas Buchleitner, Yoon-Ho Kim
SJR Q1New Journal of PhysicsOA

A recent work (Bjork and Shabbir 2014 New J. Phys. 16 013006) claims that nonmonotonic structures found in the many-particle quantum-to-classical transition (Ra et al 2013 Proc. Natl Acad. Sci. USA 110 1227-31; Tichy et al 2011 Phys. Rev. A 83 062111) are not exclusive to the many-body domain, but they also appear for single-photon as well as for semi-classical systems. We show that these situations, however, do not incorporate any quantum-to-classical transition, which makes the claims unsustai

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
11
Article|4 citations·2023
Recovering quantum entanglement after its certification
Hyeon-Jin Kim, Ji-Hyeok Jung, Kyung-Jun Lee, Young-Sik Ra
SJR Q1Science AdvancesOA

Entanglement is a crucial quantum resource with broad applications in quantum information science. For harnessing entanglement in practice, it is a prerequisite to certify the entanglement of a given quantum state. However, the certification process itself destroys the entanglement, thereby precluding further exploitation of the entanglement. Resolving this conflict, here, we present a protocol that certifies the entanglement of a quantum state without complete destruction and then probabilistic

Artificial IntelligenceComputer Science
12
Article|3 citations·2017
Reversed interplay of quantum interference and which-way information in multiphoton entangled states
Young-Sik Ra, Malte C. Tichy, Hyang‐Tag Lim, Clemens Gneiting, Klaus Mølmer, Andreas Buchleitner, Yoon-Ho Kim
SJR Q1Physical review. A/Physical review, AOA

We report experimental studies of quantum interference of multiphoton states impinging on a two-port balanced beam splitter. When the distinguishability between the two input paths is increased, we observe a reduction followed by a resurgence of the interference visibility in multiphoton coincidence detection. We ascribe this unusual behavior to the competition among contributions from distinct number state components of the interfering fields. Our results suggest that wave-particle duality give

Artificial IntelligenceComputer Science
13
Article|2 citations·2017
Tomography of mode-tunable coherent single-photon subtractor
Young-Sik Ra, Clément Jacquard, Adrien Dufour, Claude Fabre, Nicolas Treps

We implement a single-photon subtractor that can be tuned to subtract a single photon exclusively from one mode or coherently from multiple modes. We experimentally characterize the device by employing coherent-state quantum process tomography.

Artificial IntelligenceComputer Science
14
Article|1 citations·2010
Weak Value Measurement with an Incoherent Measuring Device
Young‐Wook Cho, Hyang‐Tag Lim, Young-Sik Ra, Yoon-Ho Kim

In the Aharonov-Albert-Vaidman (AAV) weak measurement, it is assumed that the measuring device or the pointer is in a quantum mechanical pure state. In reality, however, it is often not the case. In this paper, we generalize the AAV weak measurement scheme to include more generalized situations in which the measuring device is in a mixed state. We also report an optical implementation of the weak value measurement in which the incoherent pointer is realized with the pseudo-thermal light. The the

Artificial IntelligenceComputer Science
15
Article|1 citations·2010
Coherence Properties of Spontaneous Parametric Down-Conversion Pumped by 1 Multi-Mode cw Diode Laser
Osung Kwon, Young-Sik Ra, Yoon-Ho Kim

Coherence properties of the photon pair generated via spontaneous parametric down-conversion pumped by a multi-mode cw diode laser are studied with a Mach-Zehnder interferometer. Each photon of the pair enters a different input port of the interferometer and the biphoton coherence properties are studied with a two-photon detector placed at one output port. When the photon pair simultaneously enters the interferometer, periodic recurrence of the biphoton de Broglie wave packet is observed, closel

Electrical and Electronic EngineeringEngineering

Research Areas

Artificial IntelligenceAtomic and Molecular Physics, and OpticsElectrical and Electronic EngineeringComputational Theory and MathematicsBiophysicsComputational Mechanics

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