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Jongho Ahn

Seoul National University · Computer Science

About the Lab

Professor Jongho Ahn's research lab focuses on computer architecture and systems, with a strong emphasis on designing energy-efficient, scalable, and high-performance computing systems for emerging manycore and exascale platforms. The lab explores innovative interconnect topologies such as HyperX, adaptive routing algorithms, and novel memory system architectures—including multicore DIMMs and hierarchical register files—to address bandwidth, power, and scalability challenges. Research also extends to stream processing, microarchitecture simulation, and the impact of process technology scaling on reliability and energy efficiency. The lab integrates hardware-software co-design principles to optimize system-level performance and energy efficiency.

manycore architecturesmemory systemsinterconnect topologyenergy efficiencyhigh-performance computing

Research Overview

Papers
314
Total Citations
11,299
Papers (5y)
77
Primary Field
Computer Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
77total
2022
2023
2024
2025
2026
Citations per year (5y)
1,080total
20222023202420252026

Selected Papers

15
1
Article|257 citations·2009
HyperX
Jung Ho Ahn, Nathan Binkert, Al Davis, Moray McLaren, Robert Schreiber

In the push to achieve exascale performance, systems will grow to over 100,000 sockets, as growing cores-per-socket and improved single-core performance provide only part of the speedup needed. These systems will need affordable interconnect structures that scale to this level. To meet the need, we consider an extension of the hypercube and flattened butterfly topologies, the HyperX, and give an adaptive routing algorithm, DAL. HyperX takes advantage of high-radix switch components that integrat

Computer Networks and CommunicationsComputer Science
2
Article|179 citations·2009
Devices and architectures for photonic chip-scale integration
Jung Ho Ahn, Marco Fiorentino, Raymond G. Beausoleil, Nathan Binkert, A. Davis, David Fattal, Norman P. Jouppi, Moray McLaren, Charles Santori, Robert Schreiber, S. M. Spillane, Dana Vantrease
SJR Q2Applied Physics A
Electrical and Electronic EngineeringEngineering
3
Article|131 citations·2004
Evaluating the Imagine Stream Architecture
Jung Ho Ahn, William J. Dally, Brucek Khailany, Ujval J. Kapasi, Abhishek Das
ACM SIGARCH Computer Architecture News

This paper describes an experimental evaluation of theprototype Imagine stream processor. Imagine [Imagine: Media processing with streams] is a stream processor that employs a two-level register hierarchy with9.7 Kbytes of local register file capacity and 128 Kbytesof stream register file (SRF) capacity to capture producer-consumerlocality in stream applications. Parallelism is exploitedusing an array of 48 floating-point arithmetic unitsorganized as eight SIMD clusters with a 6-wide VLIW perclu

Hardware and ArchitectureComputer Science
4
Article|119 citations·2013
McSimA+: A manycore simulator with application-level+ simulation and detailed microarchitecture modeling
Jung Ho Ahn, Sheng Li, O Seongil, Norman P. Jouppi

With their significant performance and energy advantages, emerging manycore processors have also brought new challenges to the architecture research community. Manycore processors are highly integrated complex system-on-chips with complicated core and uncore subsystems. The core subsystems can consist of a large number of traditional and asymmetric cores. The uncore subsystems have also become unprecedentedly powerful and complex with deeper cache hierarchies, advanced on-chip interconnects, and

Hardware and ArchitectureComputer Science
5
Article|116 citations·1985
Transmission Electron Microscopic Study of Diagenetic Chlorite in Gulf Coast Argillaceous Sediments
Jung Ho Ahn, Donald R. Peacor
SJR Q2Clays and Clay Minerals

Abstract Transmission and analytical electron microscopy have been used to study the diagenesis of the trioctahedral component of phyllosilicates (principally chlorite) in argillaceous core samples (depths of 1750, 2450, and 5500 m) from the Gulf Coast. Chlorite was observed as 100-150-Å thick packets intergrown within mixed-layer illite/smectite in the 2450-m sample and was more abundant and larger in packet thickness in the 5500-m sample. The chlorite is disordered in stacking sequence as char

BiomaterialsMaterials Science
6
Article|113 citations·2009
Future scaling of processor-memory interfaces
Jung Ho Ahn, Norman P. Jouppi, Christos Kozyrakis, Jacob Leverich, Robert Schreiber

Continuous evolution in process technology brings energy-efficiency and reliability challenges, which are harder for memory system designs since chip multiprocessors demand high bandwidth and capacity, global wires improve slowly, and more cells are susceptible to hard and soft errors. Recently, there are proposals aiming at better main-memory energy efficiency by dividing a memory rank into subsets.

Hardware and ArchitectureComputer Science
7
Article|84 citations·2008
Multicore DIMM: an Energy Efficient Memory Module with Independently Controlled DRAMs
Jung Ho Ahn, Jacob Leverich, Robert Schreiber, Norman P. Jouppi
SJR Q2IEEE Computer Architecture Letters

Demand for memory capacity and bandwidth keeps increasing rapidly in modern computer systems, and memory power consumption is becoming a considerable portion of the system power budget. However, the current DDR DIMM standard is not well suited to effectively serve CMP memory requests from both a power and performance perspective. We propose a new memory module called a multicore DIMM, where DRAM chips are grouped into multiple virtual memory devices, each of which has its own data path and recei

Hardware and ArchitectureComputer Science
8
Article|70 citations·2006
Structural modification of carbon nanotubes by various ball milling
Jung Ho Ahn, Hwa Sung Shin, Y.-J. Kim, Hee Soon Chung
SJR Q1Journal of Alloys and Compounds
Materials ChemistryMaterials Science
9
Article|70 citations·1987
Kaolinitization of biotite; TEM data and implications for an alteration mechanism
Jung Ho Ahn, Donald R. Peacor
Artificial IntelligenceComputer Science
10
Article|64 citations·1990
Hematite Nanospheres of Possible Colloidal Origin from a Precambrian Banded Iron Formation
Jung Ho Ahn, Peter R. Buseck
SJR Q1Science

Exceptionally small spheres (nanospheres) of hematite (diameters between 120 and 200 nanometers) occur in the Marra Mamba Iron Formation of the Hamersley Basin, Australia. The nanospheres are clustered into small aggregates and may have formed by structural ordering and dehydration of colloidal iron hydroxide particles. Individual spheres consist of numerous thin, curved hematite platelets surrounding a central void that is approximately half the diamter of the sphere; this texture suggests that

Renewable Energy, Sustainability and the EnvironmentEnergy
11
Article|57 citations·1986
Transmission Electron Microscope Data for Rectorite: Implications for the Origin and Structure of “Fundamental Particles”
Jung Ho Ahn, Donald R. Peacor
SJR Q2Clays and Clay Minerals

Abstract Alternating mica-like and smectite-like layers of rectorite give rise to periodically varying contrast in 10-Å lattice fringes, yielding a periodicity of 20 Å in a transmission electron microscopic study. Expansion of rectorite using dodecylamine hydrochloride yields a three-layer repeat of thickness 32–35 Å, consisting of a basic 20-Å unit, identical to that in images of collapsed, dehydrated rectorite, and a 12-15-Å thick, intercalated organic layer. Thin packets of layers derived by

BiomaterialsMaterials Science
12
Article|55 citations·1989
Illite/Smectite from Gulf Coast Shales: A Reappraisal of Transmission Electron Microscope Images
Jung Ho Ahn, Donald R. Peacor
SJR Q2Clays and Clay Minerals

Abstract Transmission electron microscope (TEM) images of mixed-layer illite/smectite (I/S) from Gulf Coast shales obtained earlier by the authors have been reexamined by comparing them with the calculated images of G. D. Guthrie and D. R. Veblen. Ordered two-layer periodicity was not detected in the 1750- and 2450-m depth samples, for which X-ray powder diffraction (XRD) showed 20% and 40% illite randomly interstratified in I/S, respectively. Two-layer periodicities that occur in images of the

BiomaterialsMaterials Science
13
Article|46 citations·2006
Architecture---The design space of data-parallel memory systems
Jung Ho Ahn, Mattan Erez, William J. Dally

Data-parallel memory systems must maintain a large number of outstanding memory references to fully use increasing DRAM bandwidth in the presence of rising latencies. Additionally, throughput is increasingly sensitive to the reference patterns due to the rising latency of issuing DRAM commands, switching between reads and writes, and precharging/activating internal DRAM banks. We study the design space of data-parallel memory systems in light of these trends of increasing concurrency, latency, a

Hardware and ArchitectureComputer Science
14
Article|46 citations·2005
Scatter-Add in Data Parallel Architectures
Jung Ho Ahn, Mattan Erez, William J. Dally

Many important applications exhibit large amounts of data parallelism, and modern computer systems are designed to take advantage of it. While much of the computation in the multimedia and scientific application domains is data parallel, certain operations require costly serialization that increase the run time. Examples include superposition type updates in scientific computing and histogram computations in media processing. We introduce scatter-add, which is the data-parallel form of the well-

Hardware and ArchitectureComputer Science
15
Article|45 citations·1988
Formation mechanisms of illite, chlorite and mixed-layer illite-chlorite in Triassic volcanogenic sediments from the Southland Syncline, New Zealand
Jung Ho Ahn, Donald R. Peacor, D. S. Coombs
SJR Q1Contributions to Mineralogy and Petrology
BiomaterialsMaterials Science

Research Areas

Hardware and ArchitectureElectrical and Electronic EngineeringArtificial IntelligenceComputer Networks and CommunicationsMechanical EngineeringMaterials Chemistry

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