IACR News
If you have a news item you wish to distribute, they should be sent to the communications secretary. See also the events database for conference announcements.
Here you can see all recent updates to the IACR webpage. These updates are also available:
16 December 2013
SANJIT CHATTERJEE AND M. PREM LAXMAN DAS
They defined several security notions for {\\PPE} and studied their relationship. They also proposed a concrete scheme which preserves
the orthogonality of encrypted vectors. The proposed construction is claimed to achieve the strongest security notion
of property preserving encryption, called {\\LoR} security. In this work, we take a critical look at the three security theorems in the context of {\\PPE} from~\\cite{PR12}. In particular, we show
that the Pandey-Rouselakis construction does not even satisfy the weakest notion of security for {\\PPE}. We also note that
their separation results between different notions of security for {\\PPE} stand vacuous in the absence of any concrete example. We fill up this gap in the separation results of~\\cite{PR12} by suggesting an example construction of
{\\PPE}.
Vikram Singh
Provable security has been an area of contention. Some, such as Koblitz and Menezes, give little credit to the potential extra security provided and argue that it is a distracting goal. However, others believe that an algorithm with a security proof is superior to one without it, and are prepared to accept the impact to performance that their use might involve. Goldreich has been notable for his defence of the security proof, and for his opposition to the view of Koblitz and Menezes.
This paper is designed to help the reader make their own decisions on security proofs. We achieve this by giving an introduction to the typical security model used, then give a description of the EDL signature scheme and its tight reduction to the CDH problem in the Random Oracle Model, then analyse the proof\'s assumptions, meaning, validity and overhead for real world security.
Emil Stefanov, Charalampos Papamanthou, Elaine Shi
In this paper we revisit the DSSE problem. We propose the first DSSE scheme that achieves the best of both worlds, i.e., both small leakage and efficiency. In particular, our DSSE scheme leaks significantly less information than any other previous DSSE construction and supports both updates and searches in sublinear time in the worst case, maintaining at the same time a data structure of only linear size. We finally provide an implementation of our construction, showing its practical efficiency.
Fabrice Benhamouda, David Pointcheval
been deeply studied, a server corruption remains the main threat, with
many concrete cases nowadays. Verifier-based PAKE (or VPAKE)
protocols, initially called Augmented-PAKE, have been proposed to
limit the impact of any leakage. However, no satisfactory security
model has ever been proposed to quantify the actual security of a
protocol in the standard model. The unique model proposed so far is an
ideal functionality in the universal composability (UC) framework, but
is only meaningful in idealized models.
In this paper, we first enhance the Bellare-Pointcheval-Rogaway
game-based model for PAKE to VPAKE protocols, and then propose the
first game-based security model for both PAKE and VPAKE protocols that
additionally handles related passwords. It also allows a VPAKE
protocol to be secure in the standard model. We then propose several
VPAKE candidates which involve smooth projective hash functions and
multi-linear maps.
Ahto Buldas, Andres Kroonmaa, Risto Laanoja
We discuss some service quality issues that arise in practical implementation of the service and present solutions for avoiding single points of failure and guaranteeing a service with reasonable and stable delay. Guardtime AS has been operating a KSI Infrastructure for 5 years. We summarize how the KSI Infrastructure is built, and the lessons learned during the operational period of the service.
Thomas Shrimpton, R. Seth Terashima
Max Planck Institute for Software Systems, Saarbrücken, Germany
Please refer to the link below for a full description of the open positions.
Chalmers University of Technology, Sweden
More concretely, part of the research will involve the analysis and development of authentication protocols in specific settings. This will include investigating resistance of both existing and novel protocols against different types of attacks, theoretically and experimentally. In addition to investigating established settings, such as RFID authentication, the research will also explore more general authentication problems, such as those that arise in the context of trust in social networks, smartphone applications and collaborative data processing. This will be done by grounding the work in a generalised decision-making framework. The project should result in the development of theory and authentication mechanisms for noisy, constrained settings that strike an optimal balance between reliable authentication, privacy-preservation and resource consumption. Some previous research related to this research project can be found here: http://lasecwww.epfl.ch/~katerina/Publications.html
Qualifications
Applicants for the position shall have a Master’s Degree or corresponding in Computer Science, Informatics, Telecommunications, Information Security and Cryptography or in a related discipline. A master\\\'s degree in information security and cryptography is a bonus.
Experience in one or more of cryptography, probability and statistics, decision and game theory are ben
June 1
Notification: 1 February 2014
From June 1 to June 1
More Information: http://www.computer.org/portal/web/peerreviewmagazines/computer
11 December 2013
Ali El Kaafarani, Essam Ghadafi, Dalia Khader
Traceable attribute-based signatures add anonymity revocation mechanisms to attribute-based signatures whereby a special tracing authority equipped with a secret key is capable of revealing the identity of the signer. Such a feature is important in settings where accountability and abuse prevention are required.
In this work, we first provide a formal security model for traceable attribute-based signatures. Our focus is on the more practical case where attribute management is distributed among different authorities rather than relying on a single central authority.
By specializing our model to the single attribute authority setting, we overcome some of the shortcomings of the existing model for the same setting.
Our second contribution is a generic construction for the primitive which achieves a strong notion of security. Namely, it achieves CCA anonymity and its security is w.r.t.\\ adaptive adversaries. Moreover, our framework permits expressive signing polices.
Finally, we provide some instantiations of the primitive whose security reduces to falsifiable intractability assumptions and without relying on idealized assumptions.
Institute for Security in Information Technology, Technische Universitaet Muenchen; Munich (Germany)
To advance the Development of Tools for the Design of Secure Embedded Systems, we are searching for the closest possible point in time a
Research Assistant (m/f)
for a full time position.
Your Tasks:
- Participation in industry-related research projects with focus on development and implementation of new approaches and tools to support designers in the design of secure embedded systems.
- Tutor for labs and/or lectures
You:
- finished your master’s degree in Electrical Engineering or Computer Sciences or equivalent with outstanding grades.
- have strong focus on security.
- are autonomous, can work in teams and are highly motivated.
- like to work with students.
- should have practical or theoretical previous knowledge on embedded systems and/or circuit design. You are also experienced in programming and have good mathematical skills.
We offer
a position as research assistant which includes the ability to carry out a PhD thesis. With your research, you contribute to one of our main fields.
The position as research assistant is initially offered for a limited time of 2.5 years. It is paid according to TV-L E13.
TUM aims at increasing the percentage of women. Therefore, qualified women
10 December 2013
Simon Fraser University, Burnaby, Canada, North America
For one of the positions we welcome applications from researchers working in algebra or geometry, especially in subareas that complement the expertise of our current faculty. Application areas of particular interest are cryptography, communication and computation.
09 December 2013
Boston University, Boston, MA, USA
A university-funded post-doc position is available in the RISCS center and the BU Security Group (BUsec), in the Department of Computer Science at Boston University. The successful candidates will have an established research track record in one or more of the following areas: systems security, network security, applied cryptography, or cybersecurity technology policy or law. The position is funded for one year, with an option to extend to two years based on performance and availability of funds. Tentative start date is September 2014, but earlier start dates are also possible.
The BU Security Group does research in cryptography and security within the Department of Computer Science. The BU Center for Reliable Information Systems & Cyber Security (RISCS) takes a multidisciplinary approach to security by bring together experts across several discipline. Both the group and the Center also benefit from collaboration with the vibrant cryptography, security, and tech policy community in the Boston area.
October 1 - October 15
Notification: 15 May 2014
From October 1 to October 15
More Information: http://iot-journal.weebly.com/uploads/1/8/8/0/18809834/ieee_iot_journal_si_iot_security_cfp.pdf
Philips Research, Eindhoven, the Netherlands
Your Responsibilities
Most of our products are becoming connected to the cyber space. We are looking for top scientists with a strong mathematical background for strengthening our competences in digital cryptography and security and who can help us to build and offer competitive trusted solutions and services in Healthcare, Lifestyle and Lighting.
Your challenges and responsibilities will be:
- Inventing and validating in industrial project teams new digital security technologies for use in Philips products and services, making use of the Internet of Things and Cloud Computing;
- Creating innovation impact with your results in terms of intellectual property creation or research transfers into the business;
- Keeping our digital security competence at world-class level;
- Contributing to our research roadmap by new ideas and winning new proposals;
- Working together with external partners.
Your Team
For more insights you can visit: http://www.research.philips.com/
We are looking for
The successful candidate has/is:
- A PhD in mathematics or computer science and a strong inclination to cryptography, preferably proven by relevant scientific results;
- Proven practical skills in computer simulation, system architecting and computer programming;
- Practical experiences in industry;
- A strong team playing attitude, expressed in taking the lead where appropriate, building on each other’s strengths and working in a cooperative way;
- A self-propelled enthusiast with a can-do mentality.Takes ownership for making it happen;
- Good communication skills and fluent in English.
06 December 2013
Yitao Duan
Encryption [28], and evolved into Message Locked Encryption [12], strives to solve this problem. The latest work, DupLESS [11], proposes a server-aided architecture that provides the strongest privacy. The DupLESS architecture relies on a key server to help the clients generate encryption keys that result in convergent ciphertexts. In this paper, we first provide a rigorous proof of security, in the random oracle model, for the DupLESS architecture which is lacking in the original paper. Our proof shows that using additional secret, other than the data itself, for generating encryption keys achieves the best possible security under current deduplication paradigm.We then introduce a distributed protocol that eliminates the need for a key server and allows less managed systems such as P2P systems to enjoy the high security level. Implementation and evaluation show that the scheme is both robust and practical.
Michael Backes, Aniket Kate, Sebastian Meiser, Tim Ruffing
We analyze strengths and weaknesses of differential indistinguishability both individually as well as under composition, and we interpret the resulting differential security guarantees for encryption, commitments, and zero-knowledge proofs.
Surprisingly, indistinguishability with uniform randomness carries over to differential indistinguishability with SV randomness: We show that all primitives that are secure under a traditional indistinguishibility-based definition are differentially secure when they use (a bounded amount of) SV randomness instead of uniform randomness.
Sarah Ibrahimi, Boris Skoric, Jan-Jaap Oosterwijk
The code length converges to its asymptote approximately as $c_0^{-1/2}$, which is faster than the $c_0^{-1/3}$ of Tardos\' score function.
Pablo Rauzy, Sylvain Guilley
Susumu Kiyoshima, Yoshifumi Manabe, Tatsuaki Okamoto