We are proud to announce that we could win another excellent candidate for NXP filling our second open ESR position. Dusan will complete the ECRYPT-NET team at NXP (Ventzi, Miro, Florian and Simon -- see our last post) in October.
Dusan will conduct research on cryptography for passively powered devices. Current countermeasures against physical attacks focus on specific attacks and therefore fail against combined (e.g., fault and differential power) attacks. However, the overhead for adding such countermeasures is enormous. Dusan will investigate new methods (like threshold implementations) and design approaches (e.g., leakage resilient crypto). In addition, his goal - as well as Simon's - is to target efficiency in dedicated hardware and/or embedded software.
Welcome Dusan! We wish you an exciting and successful time within ECRYPT-NET. Now, the ECRYPT-NET team at NXP is looking forward to the first meeting of the complete ECRYPT-NET family co-located with the IACR School on Design and Security of Cryptographic Algorithms and Devices on Sardinia in October.
Showing posts with label jobs. Show all posts
Showing posts with label jobs. Show all posts
Tuesday, August 18, 2015
Friday, July 17, 2015
Hiring of first ESR complete at NXP
We are happy and proud to announce that we found our first excellent early stage researcher for ECRYPT-NET. Simon will join NXP on the 1st of October this year. One of his first ECRYPT-NET experiences will be to meet his fellow ESRs from our partner organizations and the ECRYPT-NET team at the IACR School on Design and Security of Cryptographic Algorithms and Devices on Sardinia.
In the three years to come, Simon will work on the design of lightweight privacy-preserving authentication mechanisms for the internet of things. Towards this he will explore new designs for suitable cryptographic protocols and pairing-based cryptography targeting efficiency in dedicated hardware and/or embedded software.
We welcome Simon, who will also closely cooperate with the COSIC group at KU Leuven, and wish him success for his endeavor and an exciting time within ECRYPT-NET.
In the three years to come, Simon will work on the design of lightweight privacy-preserving authentication mechanisms for the internet of things. Towards this he will explore new designs for suitable cryptographic protocols and pairing-based cryptography targeting efficiency in dedicated hardware and/or embedded software.
We welcome Simon, who will also closely cooperate with the COSIC group at KU Leuven, and wish him success for his endeavor and an exciting time within ECRYPT-NET.
Thursday, March 26, 2015
ESR Posts on Leightweight Cryptography at NXP Semiconductors, Leuven, Belgium
We are looking for two highly motivated early-stage researchers (ESRs/PhD students), ideally with some background on cryptology and with proven research abilities. These open posts are part of the ECRYPT-NET project and as such offer an exciting working environment in an international network with top scientists that is geared towards cutting-edge research. The financial conditions are very attractive. The project offers opportunities to travel and interact with PhD students and scientists all over Europe. Candidates may have resided in the host country for a most 1 year in the 3 years preceding the application. They can have at most 2 years of research experience at the doctoral level.
Specifically, we look for one ESR to conduct research on the design of lightweight privacy-preserving authentication mechanisms for the internet of things. The student should have a strong interested in the design of cryptographic protocols and pairing-based cryptography and preferably have a suitable background. Furthermore, since the goal is to target efficiency in dedicated hardware and/or embedded software, interest and expertise in these areas is also of advantage. (Position on EURAXESS)
The second ESR will focus on lightweight ciphers resisting combined side-channel and fault attacks. Current countermeasures against physical attacks focus on specific attacks and therefore fail against combined (e.g., fault and differential power) attacks. However, the overhead for adding such countermeasures is enormous. New methods (like threshold implementations) and design approaches (e.g., leakage resilient crypto) will be investigated. Interest and expertise in dedicated hardware and/or embedded software are advantageous. (Position on EURAXESS)
NXP Semiconductors is one of the market leaders in providing High Performance Mixed Signal and Standard Product solutions that leverage its leading RF, Analog, PM, Interface, Security, Digital Processing and Manufacturing expertise. In particular NXP’s strong drive for innovation ensures secure identification in a smart connected world. Headquartered in Europe, the company has about 23,000 employees working in more than 25 countries.
The two PhD students will, in addition to a supervisor from NXP, be supervised by a member of the Computer Security and Industrial Cryptography group (COSIC) at KU Leuven and closely collaborate with PhD students there; COSIC is within biking distance of the NXP site in Leuven. The research of COSIC has led to important cryptographic advances such as the Rijndael algorithm. The goal of the student is to receive a PhD from the KU Leuven after three years.
Please apply by mail to ventzislav.nikov@nxp.com and florian.boehl@nxp.com for the first post and to ventzislav.nikov@nxp.com and miroslav.knezevic@nxp.com for the second post following these “How to apply” guidelines.
Specifically, we look for one ESR to conduct research on the design of lightweight privacy-preserving authentication mechanisms for the internet of things. The student should have a strong interested in the design of cryptographic protocols and pairing-based cryptography and preferably have a suitable background. Furthermore, since the goal is to target efficiency in dedicated hardware and/or embedded software, interest and expertise in these areas is also of advantage. (Position on EURAXESS)
The second ESR will focus on lightweight ciphers resisting combined side-channel and fault attacks. Current countermeasures against physical attacks focus on specific attacks and therefore fail against combined (e.g., fault and differential power) attacks. However, the overhead for adding such countermeasures is enormous. New methods (like threshold implementations) and design approaches (e.g., leakage resilient crypto) will be investigated. Interest and expertise in dedicated hardware and/or embedded software are advantageous. (Position on EURAXESS)
NXP Semiconductors is one of the market leaders in providing High Performance Mixed Signal and Standard Product solutions that leverage its leading RF, Analog, PM, Interface, Security, Digital Processing and Manufacturing expertise. In particular NXP’s strong drive for innovation ensures secure identification in a smart connected world. Headquartered in Europe, the company has about 23,000 employees working in more than 25 countries.
The two PhD students will, in addition to a supervisor from NXP, be supervised by a member of the Computer Security and Industrial Cryptography group (COSIC) at KU Leuven and closely collaborate with PhD students there; COSIC is within biking distance of the NXP site in Leuven. The research of COSIC has led to important cryptographic advances such as the Rijndael algorithm. The goal of the student is to receive a PhD from the KU Leuven after three years.
Please apply by mail to ventzislav.nikov@nxp.com and florian.boehl@nxp.com for the first post and to ventzislav.nikov@nxp.com and miroslav.knezevic@nxp.com for the second post following these “How to apply” guidelines.
Sunday, March 22, 2015
ESR Post on MPC using FHE and Oblivious Transfer at Bristol University
We are looking for highly motivated
candidates with a strong academic track record, ideally with some
background on cryptology and with proven research abilities. We offer an
exciting working environment in an international network with top
scientists that is geared towards cutting-edge research. The financial
conditions are very attractive. The project offers an opportunity to
travel and interact with other PhD students and scientists all over
Europe. Candidates may have resided in the host country for a most 1
year in the 3 years preceding the application. They can have at most 2
years of research experience at the doctoral level.
In this project on MPC using FHE and Oblivious Transfer the ESR will investigate how Multi-Party Computation (MPC) protocols can enable applications to run on the cloud, or on shared private clouds. In particular we will examine practical optimization techniques, using FHE as a performance enhancer, to target specific application domains. The main focus will be on developing new protocols and specifications which address, within a general MPC framework, the specific computational requirements of different applications. The project will build upon recent work on practical instantiations of MPC protocols developed in Bristol, Aarhus, Darmstadt, Bar-Ilan, and numerous US Universities. Scientifically the project will investigate the integration of Multi-Party Computation based on homomorphic encryption (as in the SPDZ protocol) with the Multi-Party Computation protocols based on Oblivious Transfer (as in the Tiny-OT protocol). The specific objectives are:
- To determine how to have an integrated offline phase, which allows an online phase to switch between the two different protocols.
- To examine what performance improvements to existing algorithms and which new algorithms could be run on such a system.
The
Cryptography and Information Security Group in Bristol conduct research
into cryptography, the underlying hard problems on which it is based
and the hardware and software needed to implement secure systems. We
form part of the Bristol Security Centre, an Academic Centre of
Excellence in Cyber Security Research. The group has particular interest
in techniques for proving security of cryptographic systems, the
efficient implementation of such systems on small computing devices and
the verification that such implementations do what they say they do. We
also have an interest in security auditing and computer forensics.
ESRs will be required to formulate and execute on new research ideas
and directions relevant to the grant and topic. There will be a
requirement for extensive travel to visit project partners, conferences,
workshops and summer schools. The post will include extended
secondments to other institutions and companies across Europe. Thus all
candidates must be prepared, and able, to commit to these travel
requirements. The candidates will be in possession of a high ranking
degree from a good university in the field of computer science,
mathematics, or a related discipline. Previous understanding of modern
cryptography is not essential but is desirable. The post-holders will be
expected to register for a PhD at the University of Bristol (no fees
will be required to register for the degree).
To apply, and obtain further particulars: Visit http://emea3.mrted.ly/mkpt
Marie Curie ITN eligibility criteria apply to all of these positions.
ESR Post on Leakage Resilience From Lattices at Bristol University
We are looking for highly motivated candidates with a strong academic track record, ideally with some background on cryptology and with proven research abilities. We offer an exciting working environment in an international network with top scientists that is geared towards cutting-edge research. The financial conditions are very attractive. The project offers an opportunity to travel and interact with other PhD students and scientists all over Europe. Candidates may have resided in the host country for a most 1 year in the 3 years preceding the application. They can have at most 2 years of research experience at the doctoral level.
In this project on Leakage Resilience from Lattices the ESR will investigate how lattice-based cryptography can be used to create leakage-resilient scheme, which will be linked to side channel resistance of various lattice-based instantiations of practical schemes. In particular, we will examine a number of unique features of lattice-based cryptography in relation to leakage. The main focus will be on developing new methods to obtain leakage-resilient schemes. A secondary focus will be on determining reasonable leakage profiles for lattice-based schemes. The project will build upon recent work on side channels and leakage-resilience, as well as lattice-based schemes, performed in Bristol, Aarhus, EPFL, ENS and across the globe. Scientifically the project will investigate the how to exploit the inherent leakiness of the underlying hardness assumptions and to what extent recent breakthroughs with regards to multi-linear maps and indistinguishability obfuscation can be brought to bear. The specific objectives are:
- To determine how additional leakage can be incorporated meaningfully in assumptions such as learning with-errors (LWE) and learning-parity with noise (LPN).
- To provide leakage-resilient lattice-based schemes, using both low-level and high-level lattice-based techniques.
The supervisory team will be Dr Elisabeth Oswald and Dr Martijn Stam for this project.
The Cryptography and Information Security Group in Bristol conduct research into cryptography, the underlying hard problems on which it is based and the hardware and software needed to implement secure systems. We form part of the Bristol Security Centre, an Academic Centre of Excellence in Cyber Security Research. The group has particular interest in techniques for proving security of cryptographic systems, the efficient implementation of such systems on small computing devices and the verification that such implementations do what they say they do. We also have an interest in security auditing and computer forensics.
ESRs will be required to formulate and execute on new research ideas and directions relevant to the grant and topic. There will be a requirement for extensive travel to visit project partners, conferences, workshops and summer schools. The post will include extended secondments to other institutions and companies across Europe. Thus all candidates must be prepared, and able, to commit to these travel requirements. The candidates will be in possession of a high ranking degree from a good university in the field of computer science, mathematics, or a related discipline. Previous understanding of modern cryptography is not essential but is desirable. The post-holders will be expected to register for a PhD at the University of Bristol (no fees will be required to register for the degree).
To apply, and obtain further particulars: Visit http://emea3.mrted.ly/mkpt
Marie Curie ITN eligibility criteria apply to all of these positions.
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