EDBT 2026 Demo / reviewers in the wild / expert
Kristina Hostáková
dblp:201/6463
· DBLP profile ↗
9ranked-venue papers
0as first author
4since 2021 · last 2025
0000-0001-5235-8416ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 9 · 4 since 2021Theory of computation · 1 · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Security Amplification of Threshold Signatures in the Standard Model
Karen Azari, Cecilia Boschini, Kristina Hostáková, Michael Reichle |
TCC (3) | 3 |
| 2023 | Generalized Fuzzy Password-Authenticated Key Exchange from Error Correcting Codes
Jonathan Bootle, Sebastian H. Faller, Julia Hesse, Kristina Hostáková, Johannes Ottenhues |
ASIACRYPT (8) | 4 |
| 2021 | Generalized Channels from Limited Blockchain Scripts and Adaptor Signatures
Lukas Aumayr, Oguzhan Ersoy, Andreas Erwig, Sebastian Faust, Kristina Hostáková, Matteo Maffei, Pedro Moreno-Sanchez, Siavash Riahi 0002 |
ASIACRYPT (2) | 5 |
| 2021 | Bitcoin-Compatible Virtual ChannelsabstractCurrent permissionless cryptocurrencies such as Bitcoin suffer from a limited transaction rate and slow confirmation time, which hinders further adoption. Payment channels are one of the most promising solutions to address these problems, as they allow the parties of the channel to perform arbitrarily many payments in a peer-to-peer fashion while uploading only two transactions on the blockchain. This concept has been generalized into payment channel networks where a path of payment channels is used to settle the payment between two users that might not share a direct channel between them. However, this approach requires the active involvement of each user in the path, making the system less reliable (they might be offline), more expensive (they charge fees per payment), and slower (intermediaries need to be actively involved in the payment). To mitigate this issue, recent work has introduced the concept of virtual channels (IEEE S&P’19), which involve intermediaries only in the initial creation of a bridge between payer and payee, who can later on independently perform arbitrarily many off-chain transactions. Unfortunately, existing constructions are only available for Ethereum, as they rely on its account model and Turing-complete scripting language. The realization of virtual channels in other blockchain technologies with limited scripting capabilities, like Bitcoin, was so far considered an open challenge.In this work, we present the first virtual channel protocols that are built on the UTXO-model and require a scripting language supporting only a digital signature scheme and a timelock functionality, being thus backward compatible with virtually every cryptocurrency, including Bitcoin. We formalize the security properties of virtual channels as an ideal functionality in the Universal Composability framework and prove that our protocol constitutes a secure realization thereof. We have prototyped and evaluated our protocol on the Bitcoin blockchain, demonstrating its efficiency: for n sequential payments, they require an off-chain exchange of 9+2n transactions or a total of 3524+695n bytes, with no on-chain footprint in the optimistic case. This is a substantial improvement compared to routing payments in a payment channel network, which requires 8n transactions with a total of 3026n bytes to be exchanged. Lukas Aumayr, Matteo Maffei, Oguzhan Ersoy, Andreas Erwig, Sebastian Faust, Siavash Riahi 0002, Kristina Hostáková, Pedro Moreno-Sanchez |
SP | 7 |
| 2019 | Continuous Space-Bounded Non-malleable Codes from Stronger Proofs-of-Space
Binyi Chen, Yilei Chen 0001, Kristina Hostáková, Pratyay Mukherjee |
CRYPTO (1) | 3 |
| 2019 | Multi-party Virtual State Channels
Stefan Dziembowski, Lisa Eckey, Sebastian Faust, Julia Hesse, Kristina Hostáková |
EUROCRYPT (1) | 5 |
| 2019 | FastKitten: Practical Smart Contracts on Bitcoin
Poulami Das 0003, Lisa Eckey, Tommaso Frassetto, David Gens, Kristina Hostáková, Patrick Jauernig, Sebastian Faust, Ahmad-Reza Sadeghi |
USENIX Security Symposium | 5 |
| 2018 | General State Channel NetworksabstractOne of the fundamental challenges that hinder further adaption of decentralized cryptocurrencies is scalability. Because current cryptocurrencies require that all transactions are processed and stored on a distributed ledger -- the so-called blockchain -- transaction throughput is inherently limited. An important proposal to significantly improve scalability are off-chain protocols, where the massive amount of transactions is executed without requiring the costly interaction with the blockchain. Examples of off-chain protocols include payment channels and networks, which are currently deployed by popular cryptocurrencies such as Bitcoin and Ethereum. A further extension of payment networks envisioned for cryptocurrencies are so-called state channel networks. In contrast to payment networks that only support off-chain payments between users, state channel networks allow execution of arbitrary complex smart contracts. The main contribution of this work is to give the first full specification for general state channel networks. Moreover, we provide formal security definitions and prove the security of our construction against powerful adversaries. An additional benefit of our construction is the use of channel virtualization, which further reduces latency and costs in complex channel networks. Stefan Dziembowski, Sebastian Faust, Kristina Hostáková |
CCS | 3 |
| 2017 | Non-Malleable Codes for Space-Bounded Tampering
Sebastian Faust, Kristina Hostáková, Pratyay Mukherjee, Daniele Venturi 0001 |
CRYPTO (2) | 2 |